| Commit message (Collapse) | Author | Age | Files | Lines |
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Based off RE, they both currently go through the same codepath with no
difference in behavior.
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These appear to be a basic getter and setter pair, so these are fairly
trivial to implement and get out of the way.
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Updated based off information provided by Switchbrew.
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Used by sonic ages
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stream: Preserve enum class type in GetState()
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Preserves the meaning/type-safetiness of the stream state instead of
making it an opaque u32. This makes it usable for other things outside
of the service HLE context.
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Gets rid of a few indirect inclusions.
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Due to keeping the code style consistent in the yuzu codebase. `rb = rp.MakeBuilder(...)` was replaced with `rb{ctx, ...}`
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A few headers were including other headers when a forward declaration
can be used instead, allowing the include to be moved to the cpp file.
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When a destructor isn't defaulted into a cpp file, it can cause the use
of forward declarations to seemingly fail to compile for non-obvious
reasons. It also allows inlining of the construction/destruction logic
all over the place where a constructor or destructor is invoked, which
can lead to code bloat. This isn't so much a worry here, given the
services won't be created and destroyed frequently.
The cause of the above mentioned non-obvious errors can be demonstrated
as follows:
------- Demonstrative example, if you know how the described error happens, skip forwards -------
Assume we have the following in the header, which we'll call "thing.h":
\#include <memory>
// Forward declaration. For example purposes, assume the definition
// of Object is in some header named "object.h"
class Object;
class Thing {
public:
// assume no constructors or destructors are specified here,
// or the constructors/destructors are defined as:
//
// Thing() = default;
// ~Thing() = default;
//
// ... Some interface member functions would be defined here
private:
std::shared_ptr<Object> obj;
};
If this header is included in a cpp file, (which we'll call "main.cpp"),
this will result in a compilation error, because even though no
destructor is specified, the destructor will still need to be generated by
the compiler because std::shared_ptr's destructor is *not* trivial (in
other words, it does something other than nothing), as std::shared_ptr's
destructor needs to do two things:
1. Decrement the shared reference count of the object being pointed to,
and if the reference count decrements to zero,
2. Free the Object instance's memory (aka deallocate the memory it's
pointing to).
And so the compiler generates the code for the destructor doing this inside main.cpp.
Now, keep in mind, the Object forward declaration is not a complete type. All it
does is tell the compiler "a type named Object exists" and allows us to
use the name in certain situations to avoid a header dependency. So the
compiler needs to generate destruction code for Object, but the compiler
doesn't know *how* to destruct it. A forward declaration doesn't tell
the compiler anything about Object's constructor or destructor. So, the
compiler will issue an error in this case because it's undefined
behavior to try and deallocate (or construct) an incomplete type and
std::shared_ptr and std::unique_ptr make sure this isn't the case
internally.
Now, if we had defaulted the destructor in "thing.cpp", where we also
include "object.h", this would never be an issue, as the destructor
would only have its code generated in one place, and it would be in a
place where the full class definition of Object would be visible to the
compiler.
---------------------- End example ----------------------------
Given these service classes are more than certainly going to change in
the future, this defaults the constructors and destructors into the
relevant cpp files to make the construction and destruction of all of
the services consistent and unlikely to run into cases where forward
declarations are indirectly causing compilation errors. It also has the
plus of avoiding the need to rebuild several services if destruction
logic changes, since it would only be necessary to recompile the single
cpp file.
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As means to pave the way for getting rid of global state within core,
This eliminates kernel global state by removing all globals. Instead
this introduces a KernelCore class which acts as a kernel instance. This
instance lives in the System class, which keeps its lifetime contained
to the lifetime of the System class.
This also forces the kernel types to actually interact with the main
kernel instance itself instead of having transient kernel state placed
all over several translation units, keeping everything together. It also
has a nice consequence of making dependencies much more explicit.
This also makes our initialization a tad bit more correct. Previously we
were creating a kernel process before the actual kernel was initialized,
which doesn't really make much sense.
The KernelCore class itself follows the PImpl idiom, which allows
keeping all the implementation details sealed away from everything else,
which forces the use of the exposed API and allows us to avoid any
unnecessary inclusions within the main kernel header.
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Orders elements in the precise order they'll be initialized.
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GetAudioDeviceServiceWithRevisionInfo (Used by Bloodstained: Curse of the Moon)
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As we're not handling any anything about the revision data for GetAudioDeviceServiceWithRevisionInfo, it's currently marked as stubbed. However for games this shouldn't affect the result. Proper revision info would be more for homebrew.
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GetAudioRendererSampleRate is set as a "STUB" as a game could check if the sample rate it sent and the sample rate it wants don't match. Just a thought of something which could happen so keeping it as stub for the mean time
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Implement audren audio output
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These don't do anything within .cpp files (we don't include cpp files,
so...)
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service/audio: Add missing services
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Adds the missing audctl service, as well as the :a and :d services for
audin, audout, audrec, and audren.
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Previously the code was using the values from params further below after
it was std::moved. Thankfully, given AudoutParams is a trivially
copyable struct, the values would have simply been copied in this
instance and not invalidated to garbage values.
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- This is necessary so streams are created on the same thread.
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std::string doesn't include the null-terminator in its data() + size()
range. This ensures that the null-terminator will also be written to the buffer
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Uses a type that doesn't potentially dynamically allocate, and ensures
that the name of the interface is properly null-terminated when writing
it to the buffer.
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hle_ipc: Introduce generic WriteBuffer overload for multiple container types
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This introduces a slightly more generic variant of WriteBuffer().
Notably, this variant doesn't constrain the arguments to only accepting
std::vector instances. It accepts whatever adheres to the
ContiguousContainer concept in the C++ standard library.
This essentially means, std::array, std::string, and std::vector can be
used directly with this interface. The interface no longer forces you to
solely use containers that dynamically allocate.
To ensure our overloads play nice with one another, we only enable the
container-based WriteBuffer if the argument is not a pointer, otherwise
we fall back to the pointer-based one.
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Prevents implicit construction and makes these lingering non-explicit
constructors consistent with the rest of the other classes in services.
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Audout autos are identical to their counterpart except for the buffer type which yuzu already handles for us.
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* voice section updating
* fixed slight offset miscalculation
* fixed overflow
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Service/Audio: add hwopus service, stub GetWorkBufferSize function
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* We should be returning our revision instead of what is requested.
Hardware test on a 5.1.0 console
* Added sysversion comment
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* Removed duplicate structs, changed AudioRendererResponse -> UpdateDataHeader
According to game symbols(SMO), there's references to UpdateDataHeader which seems to be what AudioRendererResponse actually is
* oops
* AudioRendererParameters should be AudioRendererParameter according to SMO
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* Fixed RequestUpdateAudioRenderer deadlocks and calculated section sizes properly
This fixes RequestUpdateAudioRenderer deadlocks in games like Puyo Puyo Tetris and games which require a proper section size in games such as Retro City Rampage. This fixes causes various games to start rendering or trying to render
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* GetAudioRendererWorkBufferSize impl
Impl of GetAudioRendererWorkBufferSize based on RE, if this can be cleaned up, please contribute!
* Naming conventions
* Removed unneeded placeholder
* lioncache changes
* fixed const
* switched to Common::AlignUp
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* Add unknown function at the number command 2
* correct audout:u commands numbers
* correct audrec:u cmd number & add Unknown function
* correct IAudioDevice command numbers
* correct codecctl cmd numbers & rename the 8 function
* correct place of unknown function & fix clang-format
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All of these variables and functions are related to timings and should be within the namespace.
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Tidies up namespace declarations
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* audren_u: Schedule reoccuring event.
* audren_u: Stub GetAudioRenderersProcessMasterVolume, and misc. changes.
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* Updated the audout:u and IAudioOut, now it might work with RetroArch without trigger an assert, however it's not the ideal implementation
* Updated the audout:u and IAudioOut, now it might work with RetroArch without trigger an assert, however it's not the ideal implementation
* audout:u OpenAudioOut implementation and IAudioOut cmd 1,2,3,4,5 implementation
* using an enum for audio_out_state as well as changing its initialize to member initializer list
* Minor fixes, added Service_Audio for LOG_*, changed PcmFormat enum to EnumClass
* Minor fixes, added Service_Audio for LOG_*, changed PcmFormat enum to EnumClass
* added missing Audio loggin subclass, minor fixes, clang comment breakline
* Solving backend logging conflict
* minor fix
* Fixed duplicated Service NVDRV in backend.cpp, my bad
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* stubs for audout:u, audin:u, audrec:u, audren:u, codecctl and decoding tables with nullptr for future implementations
* fixing the changes requested (remove private, explicit)
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