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18 Commits

Author SHA1 Message Date
Lioncash
f5d7706ca1 externals: update fmt to version 5.1.0
Previously, we were on 4.1.0, which was a major version behind.
2018-07-18 17:46:17 -04:00
bunnei
3d1e8f750c Merge pull request #681 from lioncash/const
game_list: Make containsAllWords a const member function
2018-07-18 10:02:58 -07:00
bunnei
e3da9fc367 Merge pull request #682 from lioncash/telemetry
Telemetry: Minor changes
2018-07-18 10:02:46 -07:00
bunnei
24a55bba42 Merge pull request #679 from lioncash/ctor
game_list: Remove unnecessary QString initialization in KeyReleaseEater
2018-07-17 22:18:39 -07:00
bunnei
b87a71b3fe Merge pull request #678 from lioncash/astc
astc: Minor changes
2018-07-17 22:06:20 -07:00
bunnei
7c3cc08957 Merge pull request #677 from bunnei/crop-fb
Implement buffer cropping and default to handheld mode
2018-07-17 21:26:35 -07:00
Lioncash
f4b98a857b game_list: Upper-case containsAllWords to ContainsAllWords()
This makes it consistent with most of the other private utility
functions.
2018-07-18 00:15:48 -04:00
Lioncash
c8f3fc9a4b game_list: Make containsAllWords a const member function
This doesn't actually modify the internal class state, so it can be a
const member function. While we're at it, amend the function to take
its arguments by const reference.
2018-07-18 00:13:04 -04:00
Lioncash
f4c69149f9 game_list: Remove unnecessary QString initialization in KeyReleaseEater
QString initializes to an empty string by default, so this does nothing
meaningful. While we're at it, use a constructor initializer list for
initializing the gamelist member variable.
2018-07-18 00:07:47 -04:00
Lioncash
6a03badcbc astc: Initialize vector size directly in Decompress
There's no need to perform a separate resize.
2018-07-17 23:58:14 -04:00
Lioncash
0f148548f3 astc: Mark functions as internally linked where applicable 2018-07-17 23:58:14 -04:00
Lioncash
c5803e30d3 astc: const-correctness changes where applicable
A few member functions didn't actually modify class state, so these can
be amended as necessary.
2018-07-17 23:58:14 -04:00
Lioncash
e3fadb9616 astc: Delete Bits' copy contstructor and assignment operator
This also potentially avoids warnings, considering the copy assignment
operator is supposed to have a return value.
2018-07-17 23:58:14 -04:00
Lioncash
4cd52a34b9 astc: In-class initialize member variables where appropriate 2018-07-17 23:58:10 -04:00
bunnei
03c2d049d4 settings: Turn docked mode off by default. 2018-07-17 22:52:25 -04:00
bunnei
49e5de9f03 vi: Change TransactionId::CancelBuffer to LOG_CRITICAL. 2018-07-17 22:47:35 -04:00
bunnei
0d1a99edf6 vi: Fix size for ListDisplays default display. 2018-07-17 22:18:14 -04:00
bunnei
c3dd456d51 vi: Partially implement buffer crop parameters. 2018-07-17 20:13:17 -04:00
17 changed files with 121 additions and 108 deletions

2
externals/fmt vendored

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@@ -103,7 +103,7 @@ template <typename... Args>
void FmtLogMessage(Class log_class, Level log_level, const char* filename, unsigned int line_num,
const char* function, const char* format, const Args&... args) {
FmtLogMessageImpl(log_class, log_level, filename, line_num, function, format,
fmt::make_args(args...));
fmt::make_format_args(args...));
}
} // namespace Log

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@@ -18,7 +18,8 @@ u32 nvdisp_disp0::ioctl(Ioctl command, const std::vector<u8>& input, std::vector
}
void nvdisp_disp0::flip(u32 buffer_handle, u32 offset, u32 format, u32 width, u32 height,
u32 stride, NVFlinger::BufferQueue::BufferTransformFlags transform) {
u32 stride, NVFlinger::BufferQueue::BufferTransformFlags transform,
const MathUtil::Rectangle<int>& crop_rect) {
VAddr addr = nvmap_dev->GetObjectAddress(buffer_handle);
LOG_WARNING(Service,
"Drawing from address {:X} offset {:08X} Width {} Height {} Stride {} Format {}",
@@ -26,7 +27,8 @@ void nvdisp_disp0::flip(u32 buffer_handle, u32 offset, u32 format, u32 width, u3
using PixelFormat = Tegra::FramebufferConfig::PixelFormat;
const Tegra::FramebufferConfig framebuffer{
addr, offset, width, height, stride, static_cast<PixelFormat>(format), transform};
addr, offset, width, height, stride, static_cast<PixelFormat>(format),
transform, crop_rect};
Core::System::GetInstance().perf_stats.EndGameFrame();

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@@ -7,6 +7,7 @@
#include <memory>
#include <vector>
#include "common/common_types.h"
#include "common/math_util.h"
#include "core/hle/service/nvdrv/devices/nvdevice.h"
#include "core/hle/service/nvflinger/buffer_queue.h"
@@ -23,7 +24,8 @@ public:
/// Performs a screen flip, drawing the buffer pointed to by the handle.
void flip(u32 buffer_handle, u32 offset, u32 format, u32 width, u32 height, u32 stride,
NVFlinger::BufferQueue::BufferTransformFlags transform);
NVFlinger::BufferQueue::BufferTransformFlags transform,
const MathUtil::Rectangle<int>& crop_rect);
private:
std::shared_ptr<nvmap> nvmap_dev;

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@@ -57,13 +57,15 @@ const IGBPBuffer& BufferQueue::RequestBuffer(u32 slot) const {
return itr->igbp_buffer;
}
void BufferQueue::QueueBuffer(u32 slot, BufferTransformFlags transform) {
void BufferQueue::QueueBuffer(u32 slot, BufferTransformFlags transform,
const MathUtil::Rectangle<int>& crop_rect) {
auto itr = std::find_if(queue.begin(), queue.end(),
[&](const Buffer& buffer) { return buffer.slot == slot; });
ASSERT(itr != queue.end());
ASSERT(itr->status == Buffer::Status::Dequeued);
itr->status = Buffer::Status::Queued;
itr->transform = transform;
itr->crop_rect = crop_rect;
}
boost::optional<const BufferQueue::Buffer&> BufferQueue::AcquireBuffer() {

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@@ -6,6 +6,7 @@
#include <vector>
#include <boost/optional.hpp>
#include "common/math_util.h"
#include "common/swap.h"
#include "core/hle/kernel/event.h"
@@ -68,12 +69,14 @@ public:
Status status = Status::Free;
IGBPBuffer igbp_buffer;
BufferTransformFlags transform;
MathUtil::Rectangle<int> crop_rect;
};
void SetPreallocatedBuffer(u32 slot, IGBPBuffer& buffer);
boost::optional<u32> DequeueBuffer(u32 width, u32 height);
const IGBPBuffer& RequestBuffer(u32 slot) const;
void QueueBuffer(u32 slot, BufferTransformFlags transform);
void QueueBuffer(u32 slot, BufferTransformFlags transform,
const MathUtil::Rectangle<int>& crop_rect);
boost::optional<const Buffer&> AcquireBuffer();
void ReleaseBuffer(u32 slot);
u32 Query(QueryType type);

View File

@@ -149,7 +149,8 @@ void NVFlinger::Compose() {
ASSERT(nvdisp);
nvdisp->flip(igbp_buffer.gpu_buffer_id, igbp_buffer.offset, igbp_buffer.format,
igbp_buffer.width, igbp_buffer.height, igbp_buffer.stride, buffer->transform);
igbp_buffer.width, igbp_buffer.height, igbp_buffer.stride, buffer->transform,
buffer->crop_rect);
buffer_queue->ReleaseBuffer(buffer->slot);
}

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@@ -7,6 +7,7 @@
#include <memory>
#include <boost/optional.hpp>
#include "common/alignment.h"
#include "common/math_util.h"
#include "common/scope_exit.h"
#include "core/core_timing.h"
#include "core/hle/ipc_helpers.h"
@@ -27,8 +28,8 @@ struct DisplayInfo {
char display_name[0x40]{"Default"};
u64 unknown_1{1};
u64 unknown_2{1};
u64 width{1920};
u64 height{1080};
u64 width{1280};
u64 height{720};
};
static_assert(sizeof(DisplayInfo) == 0x60, "DisplayInfo has wrong size");
@@ -327,8 +328,8 @@ public:
protected:
void SerializeData() override {
// TODO(Subv): Figure out what this value means, writing non-zero here will make libnx try
// to read an IGBPBuffer object from the parcel.
// TODO(Subv): Figure out what this value means, writing non-zero here will make libnx
// try to read an IGBPBuffer object from the parcel.
Write<u32_le>(1);
WriteObject(buffer);
Write<u32_le>(0);
@@ -360,8 +361,8 @@ public:
INSERT_PADDING_WORDS(3);
u32_le timestamp;
s32_le is_auto_timestamp;
s32_le crop_left;
s32_le crop_top;
s32_le crop_left;
s32_le crop_right;
s32_le crop_bottom;
s32_le scaling_mode;
@@ -370,6 +371,10 @@ public:
INSERT_PADDING_WORDS(2);
u32_le fence_is_valid;
std::array<Fence, 2> fences;
MathUtil::Rectangle<int> GetCropRect() const {
return {crop_left, crop_top, crop_right, crop_bottom};
}
};
static_assert(sizeof(Data) == 80, "ParcelData has wrong size");
@@ -519,7 +524,8 @@ private:
} else if (transaction == TransactionId::QueueBuffer) {
IGBPQueueBufferRequestParcel request{ctx.ReadBuffer()};
buffer_queue->QueueBuffer(request.data.slot, request.data.transform);
buffer_queue->QueueBuffer(request.data.slot, request.data.transform,
request.data.GetCropRect());
IGBPQueueBufferResponseParcel response{1280, 720};
ctx.WriteBuffer(response.Serialize());
@@ -532,7 +538,7 @@ private:
IGBPQueryResponseParcel response{value};
ctx.WriteBuffer(response.Serialize());
} else if (transaction == TransactionId::CancelBuffer) {
LOG_WARNING(Service_VI, "(STUBBED) called, transaction=CancelBuffer");
LOG_CRITICAL(Service_VI, "(STUBBED) called, transaction=CancelBuffer");
} else {
ASSERT_MSG(false, "Unimplemented");
}

View File

@@ -67,6 +67,7 @@ struct FramebufferConfig {
using TransformFlags = Service::NVFlinger::BufferQueue::BufferTransformFlags;
TransformFlags transform_flags;
MathUtil::Rectangle<int> crop_rect;
};
namespace Engines {

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@@ -154,6 +154,7 @@ void RendererOpenGL::LoadFBToScreenInfo(const Tegra::FramebufferConfig& framebuf
// Framebuffer orientation handling
framebuffer_transform_flags = framebuffer.transform_flags;
framebuffer_crop_rect = framebuffer.crop_rect;
// Ensure no bad interactions with GL_UNPACK_ALIGNMENT, which by default
// only allows rows to have a memory alignement of 4.
@@ -320,11 +321,24 @@ void RendererOpenGL::DrawScreenTriangles(const ScreenInfo& screen_info, float x,
}
}
ASSERT_MSG(framebuffer_crop_rect.top == 0, "Unimplemented");
ASSERT_MSG(framebuffer_crop_rect.left == 0, "Unimplemented");
// Scale the output by the crop width/height. This is commonly used with 1280x720 rendering
// (e.g. handheld mode) on a 1920x1080 framebuffer.
f32 scale_u = 1.f, scale_v = 1.f;
if (framebuffer_crop_rect.GetWidth() > 0) {
scale_u = static_cast<f32>(framebuffer_crop_rect.GetWidth()) / screen_info.texture.width;
}
if (framebuffer_crop_rect.GetHeight() > 0) {
scale_v = static_cast<f32>(framebuffer_crop_rect.GetHeight()) / screen_info.texture.height;
}
std::array<ScreenRectVertex, 4> vertices = {{
ScreenRectVertex(x, y, texcoords.top, left),
ScreenRectVertex(x + w, y, texcoords.bottom, left),
ScreenRectVertex(x, y + h, texcoords.top, right),
ScreenRectVertex(x + w, y + h, texcoords.bottom, right),
ScreenRectVertex(x, y, texcoords.top * scale_u, left * scale_v),
ScreenRectVertex(x + w, y, texcoords.bottom * scale_u, left * scale_v),
ScreenRectVertex(x, y + h, texcoords.top * scale_u, right * scale_v),
ScreenRectVertex(x + w, y + h, texcoords.bottom * scale_u, right * scale_v),
}};
state.texture_units[0].texture_2d = screen_info.display_texture;

View File

@@ -97,4 +97,5 @@ private:
/// Used for transforming the framebuffer orientation
Tegra::FramebufferConfig::TransformFlags framebuffer_transform_flags;
MathUtil::Rectangle<int> framebuffer_crop_rect;
};

View File

@@ -25,16 +25,15 @@
class BitStream {
public:
BitStream(unsigned char* ptr, int nBits = 0, int start_offset = 0)
: m_BitsWritten(0), m_BitsRead(0), m_NumBits(nBits), m_CurByte(ptr),
m_NextBit(start_offset % 8), done(false) {}
explicit BitStream(unsigned char* ptr, int nBits = 0, int start_offset = 0)
: m_NumBits(nBits), m_CurByte(ptr), m_NextBit(start_offset % 8) {}
~BitStream() = default;
int GetBitsWritten() const {
return m_BitsWritten;
}
~BitStream() {}
void WriteBitsR(unsigned int val, unsigned int nBits) {
for (unsigned int i = 0; i < nBits; i++) {
WriteBit((val >> (nBits - i - 1)) & 1);
@@ -95,33 +94,28 @@ private:
done = done || ++m_BitsWritten >= m_NumBits;
}
int m_BitsWritten;
int m_BitsWritten = 0;
const int m_NumBits;
unsigned char* m_CurByte;
int m_NextBit;
int m_BitsRead;
int m_NextBit = 0;
int m_BitsRead = 0;
bool done;
bool done = false;
};
template <typename IntType>
class Bits {
private:
const IntType& m_Bits;
// Don't copy
Bits() {}
Bits(const Bits&) {}
Bits& operator=(const Bits&) {}
public:
explicit Bits(IntType& v) : m_Bits(v) {}
explicit Bits(const IntType& v) : m_Bits(v) {}
uint8_t operator[](uint32_t bitPos) {
Bits(const Bits&) = delete;
Bits& operator=(const Bits&) = delete;
uint8_t operator[](uint32_t bitPos) const {
return static_cast<uint8_t>((m_Bits >> bitPos) & 1);
}
IntType operator()(uint32_t start, uint32_t end) {
IntType operator()(uint32_t start, uint32_t end) const {
if (start == end) {
return (*this)[start];
} else if (start > end) {
@@ -133,6 +127,9 @@ public:
uint64_t mask = (1 << (end - start + 1)) - 1;
return (m_Bits >> start) & mask;
}
private:
const IntType& m_Bits;
};
enum EIntegerEncoding { eIntegerEncoding_JustBits, eIntegerEncoding_Quint, eIntegerEncoding_Trit };
@@ -186,12 +183,12 @@ public:
m_QuintValue = val;
}
bool MatchesEncoding(const IntegerEncodedValue& other) {
bool MatchesEncoding(const IntegerEncodedValue& other) const {
return m_Encoding == other.m_Encoding && m_NumBits == other.m_NumBits;
}
// Returns the number of bits required to encode nVals values.
uint32_t GetBitLength(uint32_t nVals) {
uint32_t GetBitLength(uint32_t nVals) const {
uint32_t totalBits = m_NumBits * nVals;
if (m_Encoding == eIntegerEncoding_Trit) {
totalBits += (nVals * 8 + 4) / 5;
@@ -382,19 +379,15 @@ private:
namespace ASTCC {
struct TexelWeightParams {
uint32_t m_Width;
uint32_t m_Height;
bool m_bDualPlane;
uint32_t m_MaxWeight;
bool m_bError;
bool m_bVoidExtentLDR;
bool m_bVoidExtentHDR;
uint32_t m_Width = 0;
uint32_t m_Height = 0;
bool m_bDualPlane = false;
uint32_t m_MaxWeight = 0;
bool m_bError = false;
bool m_bVoidExtentLDR = false;
bool m_bVoidExtentHDR = false;
TexelWeightParams() {
memset(this, 0, sizeof(*this));
}
uint32_t GetPackedBitSize() {
uint32_t GetPackedBitSize() const {
// How many indices do we have?
uint32_t nIdxs = m_Height * m_Width;
if (m_bDualPlane) {
@@ -413,7 +406,7 @@ struct TexelWeightParams {
}
};
TexelWeightParams DecodeBlockInfo(BitStream& strm) {
static TexelWeightParams DecodeBlockInfo(BitStream& strm) {
TexelWeightParams params;
// Read the entire block mode all at once
@@ -612,8 +605,8 @@ TexelWeightParams DecodeBlockInfo(BitStream& strm) {
return params;
}
void FillVoidExtentLDR(BitStream& strm, uint32_t* const outBuf, uint32_t blockWidth,
uint32_t blockHeight) {
static void FillVoidExtentLDR(BitStream& strm, uint32_t* const outBuf, uint32_t blockWidth,
uint32_t blockHeight) {
// Don't actually care about the void extent, just read the bits...
for (int i = 0; i < 4; ++i) {
strm.ReadBits(13);
@@ -628,23 +621,25 @@ void FillVoidExtentLDR(BitStream& strm, uint32_t* const outBuf, uint32_t blockWi
uint32_t rgba = (r >> 8) | (g & 0xFF00) | (static_cast<uint32_t>(b) & 0xFF00) << 8 |
(static_cast<uint32_t>(a) & 0xFF00) << 16;
for (uint32_t j = 0; j < blockHeight; j++)
for (uint32_t j = 0; j < blockHeight; j++) {
for (uint32_t i = 0; i < blockWidth; i++) {
outBuf[j * blockWidth + i] = rgba;
}
}
}
void FillError(uint32_t* outBuf, uint32_t blockWidth, uint32_t blockHeight) {
for (uint32_t j = 0; j < blockHeight; j++)
static void FillError(uint32_t* outBuf, uint32_t blockWidth, uint32_t blockHeight) {
for (uint32_t j = 0; j < blockHeight; j++) {
for (uint32_t i = 0; i < blockWidth; i++) {
outBuf[j * blockWidth + i] = 0xFFFF00FF;
}
}
}
// Replicates low numBits such that [(toBit - 1):(toBit - 1 - fromBit)]
// is the same as [(numBits - 1):0] and repeats all the way down.
template <typename IntType>
IntType Replicate(const IntType& val, uint32_t numBits, uint32_t toBit) {
static IntType Replicate(const IntType& val, uint32_t numBits, uint32_t toBit) {
if (numBits == 0)
return 0;
if (toBit == 0)
@@ -668,27 +663,15 @@ IntType Replicate(const IntType& val, uint32_t numBits, uint32_t toBit) {
class Pixel {
protected:
typedef int16_t ChannelType;
uint8_t m_BitDepth[4];
int16_t color[4];
using ChannelType = int16_t;
uint8_t m_BitDepth[4] = {8, 8, 8, 8};
int16_t color[4] = {};
public:
Pixel() {
for (int i = 0; i < 4; i++) {
m_BitDepth[i] = 8;
color[i] = 0;
}
}
Pixel(ChannelType a, ChannelType r, ChannelType g, ChannelType b, unsigned bitDepth = 8) {
for (int i = 0; i < 4; i++)
m_BitDepth[i] = bitDepth;
color[0] = a;
color[1] = r;
color[2] = g;
color[3] = b;
}
Pixel() = default;
Pixel(ChannelType a, ChannelType r, ChannelType g, ChannelType b, unsigned bitDepth = 8)
: m_BitDepth{uint8_t(bitDepth), uint8_t(bitDepth), uint8_t(bitDepth), uint8_t(bitDepth)},
color{a, r, g, b} {}
// Changes the depth of each pixel. This scales the values to
// the appropriate bit depth by either truncating the least
@@ -807,8 +790,8 @@ public:
}
};
void DecodeColorValues(uint32_t* out, uint8_t* data, uint32_t* modes, const uint32_t nPartitions,
const uint32_t nBitsForColorData) {
static void DecodeColorValues(uint32_t* out, uint8_t* data, const uint32_t* modes,
const uint32_t nPartitions, const uint32_t nBitsForColorData) {
// First figure out how many color values we have
uint32_t nValues = 0;
for (uint32_t i = 0; i < nPartitions; i++) {
@@ -844,8 +827,7 @@ void DecodeColorValues(uint32_t* out, uint8_t* data, uint32_t* modes, const uint
// Once we have the decoded values, we need to dequantize them to the 0-255 range
// This procedure is outlined in ASTC spec C.2.13
uint32_t outIdx = 0;
std::vector<IntegerEncodedValue>::const_iterator itr;
for (itr = decodedColorValues.begin(); itr != decodedColorValues.end(); itr++) {
for (auto itr = decodedColorValues.begin(); itr != decodedColorValues.end(); ++itr) {
// Have we already decoded all that we need?
if (outIdx >= nValues) {
break;
@@ -978,7 +960,7 @@ void DecodeColorValues(uint32_t* out, uint8_t* data, uint32_t* modes, const uint
}
}
uint32_t UnquantizeTexelWeight(const IntegerEncodedValue& val) {
static uint32_t UnquantizeTexelWeight(const IntegerEncodedValue& val) {
uint32_t bitval = val.GetBitValue();
uint32_t bitlen = val.BaseBitLength();
@@ -1067,17 +1049,18 @@ uint32_t UnquantizeTexelWeight(const IntegerEncodedValue& val) {
return result;
}
void UnquantizeTexelWeights(uint32_t out[2][144], std::vector<IntegerEncodedValue>& weights,
const TexelWeightParams& params, const uint32_t blockWidth,
const uint32_t blockHeight) {
static void UnquantizeTexelWeights(uint32_t out[2][144],
const std::vector<IntegerEncodedValue>& weights,
const TexelWeightParams& params, const uint32_t blockWidth,
const uint32_t blockHeight) {
uint32_t weightIdx = 0;
uint32_t unquantized[2][144];
std::vector<IntegerEncodedValue>::const_iterator itr;
for (itr = weights.begin(); itr != weights.end(); itr++) {
for (auto itr = weights.begin(); itr != weights.end(); ++itr) {
unquantized[0][weightIdx] = UnquantizeTexelWeight(*itr);
if (params.m_bDualPlane) {
itr++;
++itr;
unquantized[1][weightIdx] = UnquantizeTexelWeight(*itr);
if (itr == weights.end()) {
break;
@@ -1261,8 +1244,8 @@ static inline uint32_t Select2DPartition(int32_t seed, int32_t x, int32_t y, int
}
// Section C.2.14
void ComputeEndpoints(Pixel& ep1, Pixel& ep2, const uint32_t*& colorValues,
uint32_t colorEndpointMode) {
static void ComputeEndpoints(Pixel& ep1, Pixel& ep2, const uint32_t*& colorValues,
uint32_t colorEndpointMode) {
#define READ_UINT_VALUES(N) \
uint32_t v[N]; \
for (uint32_t i = 0; i < N; i++) { \
@@ -1382,8 +1365,8 @@ void ComputeEndpoints(Pixel& ep1, Pixel& ep2, const uint32_t*& colorValues,
#undef READ_INT_VALUES
}
void DecompressBlock(uint8_t inBuf[16], const uint32_t blockWidth, const uint32_t blockHeight,
uint32_t* outBuf) {
static void DecompressBlock(uint8_t inBuf[16], const uint32_t blockWidth,
const uint32_t blockHeight, uint32_t* outBuf) {
BitStream strm(inBuf);
TexelWeightParams weightParams = DecodeBlockInfo(strm);
@@ -1617,8 +1600,7 @@ namespace Tegra::Texture::ASTC {
std::vector<uint8_t> Decompress(std::vector<uint8_t>& data, uint32_t width, uint32_t height,
uint32_t block_width, uint32_t block_height) {
uint32_t blockIdx = 0;
std::vector<uint8_t> outData;
outData.resize(height * width * 4);
std::vector<uint8_t> outData(height * width * 4);
for (uint32_t j = 0; j < height; j += block_height) {
for (uint32_t i = 0; i < width; i += block_width) {

View File

@@ -97,7 +97,7 @@ void Config::ReadValues() {
qt_config->endGroup();
qt_config->beginGroup("System");
Settings::values.use_docked_mode = qt_config->value("use_docked_mode", true).toBool();
Settings::values.use_docked_mode = qt_config->value("use_docked_mode", false).toBool();
qt_config->endGroup();
qt_config->beginGroup("Miscellaneous");

View File

@@ -17,10 +17,7 @@
#include "game_list_p.h"
#include "ui_settings.h"
GameList::SearchField::KeyReleaseEater::KeyReleaseEater(GameList* gamelist) {
this->gamelist = gamelist;
edit_filter_text_old = "";
}
GameList::SearchField::KeyReleaseEater::KeyReleaseEater(GameList* gamelist) : gamelist{gamelist} {}
// EventFilter in order to process systemkeys while editing the searchfield
bool GameList::SearchField::KeyReleaseEater::eventFilter(QObject* obj, QEvent* event) {
@@ -141,10 +138,12 @@ GameList::SearchField::SearchField(GameList* parent) : QWidget{parent} {
* @param userinput String containing all words getting checked
* @return true if the haystack contains all words of userinput
*/
bool GameList::containsAllWords(QString haystack, QString userinput) {
QStringList userinput_split = userinput.split(" ", QString::SplitBehavior::SkipEmptyParts);
bool GameList::ContainsAllWords(const QString& haystack, const QString& userinput) const {
const QStringList userinput_split =
userinput.split(' ', QString::SplitBehavior::SkipEmptyParts);
return std::all_of(userinput_split.begin(), userinput_split.end(),
[haystack](QString s) { return haystack.contains(s); });
[&haystack](const QString& s) { return haystack.contains(s); });
}
// Event in order to filter the gamelist after editing the searchfield
@@ -178,7 +177,7 @@ void GameList::onTextChanged(const QString& newText) {
// The search is case insensitive because of toLower()
// I decided not to use Qt::CaseInsensitive in containsAllWords to prevent
// multiple conversions of edit_filter_text for each game in the gamelist
if (containsAllWords(file_name.append(" ").append(file_title), edit_filter_text) ||
if (ContainsAllWords(file_name.append(' ').append(file_title), edit_filter_text) ||
(file_programmid.count() == 16 && edit_filter_text.contains(file_programmid))) {
tree_view->setRowHidden(i, root_index, false);
++result_count;

View File

@@ -89,7 +89,7 @@ private:
void PopupContextMenu(const QPoint& menu_location);
void RefreshGameDirectory();
bool containsAllWords(QString haystack, QString userinput);
bool ContainsAllWords(const QString& haystack, const QString& userinput) const;
SearchField* search_field;
GMainWindow* main_window = nullptr;

View File

@@ -110,7 +110,7 @@ void Config::ReadValues() {
sdl2_config->GetBoolean("Data Storage", "use_virtual_sd", true);
// System
Settings::values.use_docked_mode = sdl2_config->GetBoolean("System", "use_docked_mode", true);
Settings::values.use_docked_mode = sdl2_config->GetBoolean("System", "use_docked_mode", false);
// Miscellaneous
Settings::values.log_filter = sdl2_config->Get("Miscellaneous", "log_filter", "*:Trace");

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@@ -163,7 +163,7 @@ use_virtual_sd =
[System]
# Whether the system is docked
# 1 (default): Yes, 0: No
# 1: Yes, 0 (default): No
use_docked_mode =
# The system region that yuzu will use during emulation