This is something I removed by mistake. It didn't break anything in
most titles, but the Mii Channel *requires* write requests to
/dev/usb/kbd to succeed before exiting, so this commit readds the stub.
Turns out it is completely unneeded and it actually works better
*without* it.
Just try launching the system menu from the HBC; in current master, it
will disconnect the remote and not connect it automatically again. With
this change, it will.
The recent IOS initialization changes caused the Bluetooth device to
no longer exist before "starting" IOS (as it should be…), which meant
that Core could not activate Wii remotes during the boot process
anymore.
But that is actually completely useless, because we can just have the
emulated Bluetooth code itself activate Wii remotes as appropriate,
at the right moment.
We can return early from invalid conditions, which allows getting rid
of quite a few levels of indentation.
And let's not duplicate the new_position > file_size check.
This prevents Dolphin from writing to /sys/uid.sys (on the host; root
partition) when installing a WAD before starting emulation, because
the session root is not initialized at that moment.
Incidentally, this also gets rid of a singleton.
This implements MIOS's PPC bootstrapping functionality, which enables
users to start a GameCube game from the Wii System Menu.
Because we aren't doing Starlet LLE (and don't have a boot1), we can
just jump to MIOS when the emulated software does an ES_LAUNCH or uses
ioctlv 0x25 to launch BC.
Note that the process is more complex on a real Wii and goes through
several more steps before getting to MIOS:
* The System Menu detects a GameCube disc and launches BC (1-100)
instead of the game. [Dolphin does this too.]
* BC, which is reportedly very similar to boot1, lowers the Hollywood
clock speed to the Flipper's and then launches boot2.
* boot2 sees the lowered clock speed and launches MIOS (1-101) instead
of the System Menu.
MIOS runs instead of IOS in GC mode and has an embedded GC IPL (which
is the code actually responsible for loading the disc game) and a PPC
bootstrap code. To get things working properly, we simply need to load
both to memory, then jump to the bootstrap code at 0x3400.
Obviously, because of the way this works, a real MIOS is required.
It held a raw pointer to a IOS::HLE::Device::BluetoothEmu that is not
guaranteed to exist (and of course, nothing checked that it wasn't
nullptr), but what is more, it's totally unnecessary because we have
IOS::HLE::GetDeviceByName().
Since we cannot always inform the host that Wii remotes are
disconnected from ES, that is now done in BluetoothEmu's destructor.
Unless IOS failed at ES_Launch, it doesn't appear to write anything
back to the request after a launch, because the request is never
actually replied to in the normal way.
So let's just drop the writes to make things less confusing.
This ioctlv is used to launch BC. Not sure if that's useful,
since only the system menu is known to launch BC and it does that
through a regular ES_LAUNCH; but let's implement it anyway.
(Implementation based on IOS59.)
Some minor changes to make things slightly less confusing:
* Reinit doesn't actually init anything. It just adds static devices to
the map, so let's give it an actually descriptive name. And let's not
expose it in the header when it should not be.
* Reset's parameter name was changed from "force" -- which totally does
not describe what it does -- to "clear_devices".
* Add a reload function which handles the reload process properly
(reset all devices, set up memory values, re-add devices) and
without publicly exposing implementation details.
The second output vector should not be written to for
IOCTLV_NCD_READCONFIG. If it is, the system menu will never attempt
to open /dev/net/wd/command and request a Wi-Fi scan.
This prevents panic alerts from showing up three times when starting
Wii emulation whenever libusb could not be initialized. The user has
already seen a warning at startup -- no need to warn them 3 more times.
The usbdk backend is the only libusb backend that has official support
for isochronous transfers (which are required for Wii Speak,
microphones and cameras). And it's actively developed and maintained.
This reimplements the USB HID v4 IOS device using the new common
USB code (to reuse more code and allow emulated HIDs to be added
more easily in the future).
The main difference is that HIDs now have to be whitelisted, like
every other USB device for OH0 and VEN.
libusb on Windows is limited to only a single context. Trying to open
more than one can cause device enumerations to fail randomly.
libusb is thread-safe and we don't use the manual polling support (with
`poll()`) so this should be safe.
The Host class will be used by the OH0, VEN and HID implementations
as the base class for the IOS HLE device. It handles scanning devices,
detecting device changes and everything that will be needed for OH0,
VEN and HID to be implemented, while mostly abstracting libusb away.
The Device class is for actual USB devices. This commit adds a
LibusbDevice which interacts with a real USB device and enables
USB passthrough.
This is unnecessary now that IOS::HLE is responsible for writing the
values to memory; removing the writes also prevents the IOS minor
version from being mangled (by the write to 0x3142).
This fixes savestates when using Bluetooth passthrough by keeping track
of pending transfer commands and discarding them on state load, so that
the emulated software receives a reply to IOS requests as expected.
With this change, savestates in BT passthrough should work as long as
no Wiimote is connected when creating the savestate and when
restoring it. Yes, I know this is an important limitation -- but
that is probably the best we can do, and it's still better than
completely broken savestates.
This is useful to know which IOS version is required by a title without
having to look at the TMD manually.
The IOS version row will only appear if there is a TMD, of course.
Some structures will be reused and shared between several IOS USB
device implementations. This prepares for the upcoming USB PR.
I've also removed GetPointer calls in the trivial case (BT passthrough)
If we don't check for Core::IsRunning(), event types such as
iosNotifyResetButton may actually be nullptr, or some random invalid
pointer (after an emulation start then shutdown) and be used when the
user triggers a reset, which causes random crashes.
IPC_HLE is actually IOS HLE. The actual IPC emulation is not in
IPC_HLE, but in HW/WII_IPC.cpp. So calling IPC_HLE IOS is more
accurate. (If IOS LLE gets ever implemented, it'll likely be at
a lower level -- Starlet LLE.)
This also totally gets rid of the IPC_HLE prefix in file names, and
moves some source files to their own subdirectories to make the file
hierarchy cleaner.
We're going to get ~14 additional source files with the USB PR,
and this is really needed to keep things from becoming a total pain.
Now that everything has been changed to use the new structs, the old
methods and structs can be removed.
And while I was changing the base device class, I also moved the
"unsupported command" code to a separate function. It was pretty silly
to copy the same 3 lines for ~5 commands.
This adds well-defined structs that are responsible for parsing
resource requests, instead of duplicating the logic and offsets all
over IOS HLE. Command handler functions are now passed parsed requests
instead of a command address.
This may not seem like a very important change, but it removes the
need to remember all of the struct offsets or copy/paste existing
struct request variables. It also prevents nasty bugs which have
occurred in the past, such as parsing an ioctl as if it were an ioctlv
(that's way too easy to do if you pass command addresses directly);
or writing something to 0x0, which can easily happen by mistake with
a close handler that can be called with invalid command addresses.
Bonus changes:
- The return code is not an obscure Memory::Write_U32 anymore, but an
explicit, more obvious SetReturnValue() call. (Which correctly takes
a s32 instead of a u32, since return codes are signed.)
- Open handlers are now only responsible for returning an IOS ret code,
and Close handlers don't return anything and don't have to worry
about checking whether the request is a real one anymore.
- DumpAsync was moved to the ioctlv request struct, because it did
not really make sense to make it part of the IOS device and it only
works for ioctlvs.
All current usages have been removed; they will be readded in a
later commit.
As of this commit, nothing uses the structs yet. Usages will be
migrated progressively.
Without this, attempts to savestate std::set will fail with an error
about dropping the const qualifier.
<Lioncash> leoetlino: I'll try to break it down: So, when you do a
ranged-for on a container, it's essentially syntactic sugar over begin
and end iterators. std::set is an associative container where the key
type is the same as the value type, and so it's required that all
iterator functions return constant iterators. If this wasn't a
requirement, it would allow changing the ordering of elements from
outside of the set's API (this is bad).
Dolphin is able to generate one with all correct default settings, so
we don't need to ship with a pre-generated SYSCONF and worry about
syncing default settings.
Additionally, this commit changes SysConf to work with session SYSCONFs
so that Dolphin is able to generate a default one even for Movie/TAS.
Which SYSCONF needs to be touched is explicitly specified to avoid
confusion about which file SysConf is managing.
(Another notable change is that the Wii root functions are moved into
Core to prevent Common from depending on Core.)
Reset():
We only need to close IOS devices which were opened, and we can do that
simply by iterating over s_fdmap and closing any opened device.
With this change, s_device_map can be cleared at once.
SetDefaultContentFile():
We can just use s_es_handles which is guaranteed to contain three valid
ES devices. Gets rid of a downcast.
Since the Open command won't ever return with the stub, there's no way
we will get a Close/IOCtl/IOCtlV for it, so we don't have to
implement it at all.
is_hardware is an obscure name (what does hardware mean?) and it forces
us to assume that anything that !is_hardware is a FileIO device. This
assumption prevents properly restoring OH0 child devices (which will be
implemented in the USB PR), so this commit replaces the is_hardware
bool with a device type.
Confirmed by a hardware test and a quick diassembly of /dev/es.
I'm not aware of anything that opens several ES handles, but
technically, this fixes a small inaccuracy in IOS HLE.
For IOCTL_STM_EVENTHOOK, IOS checks if there is already an event hook
to prevent overriding an existing event hook message with a new one,
without first releasing it.
Currently, the country is always overridden depending on the Wii
language setting. This makes it impossible to change the country
independently from the language, unlike on a Wii, since a language
will always be associated to an unique country (which is hardcoded
in Dolphin's codebase).
This behaviour was added in c881262 and changed in PR 4319 to happen
every time emulation is started. It doesn't seem to be needed anymore,
as a quick testing shows that a Japanese system menu is able to load
in Japanese even with the region set to France, or anything other than
Japan in fact. So what this commit changes is drop this code.
Fixes issue 9884.
Removes #defines which have been unused for years and cleans up
naming.
This also changes IPC_REP_ASYNC to simply IPC_REPLY because it turns
out it's actually not specific to async replies, but used for all
command replies.
- Use an enum instead of defines.
- Only use the FS_ prefix for return codes which are actually related
to FS stuff, not for everything.
- Remove duplicated error codes and clean up the names.
This removes Open() and Close() functions from devices whenever they
did nothing more than the base class (setting m_Active, returning a
default reply).
Also, since IOS close commands practically always return FS_SUCCESS,
writing the return code is moved to HandleCommand() in WII_IPC_HLE,
which has two benefits: it's not duplicated all over the place
(so people will not forget it) and it gets rid of having to check
the force parameter, since HandleCommand() is always called for
real IOS commands, so command_address is guaranteed to be valid.
It looks like at some point Dolphin device IDs coincided with IOS file
descriptors, but this is not the case anymore, so keeping those
WriteReturnCode(GetDeviceID()) in every single IOS HLE device,
as if the device ID was used as IOS fd, is both unnecessary
and confusing.
Jan 04 22:55:01 <leoetlino> fwiw, it looks like there are new warnings in the RegCache code
Jan 04 22:55:04 <leoetlino> Source/Core/Core/PowerPC/Jit64/FPURegCache.cpp:13:33: warning: declaration shadows a variable in the global namespace [-Wshadow]
Jan 04 22:56:19 <@Lioncash> yeah, the jit global should have a g_ prefix.
This fixes shadowing warnings and adds the g_ prefix to a global.
We don't really have to keep track of device opens/closes manually,
since we can already check that by calling IsOpened() on the device.
This also replaces some loops with for range loops.
ExecuteCommand was becoming pretty confusing with unused variables
for some commands, confusing names (device ID != IOS file descriptor),
duplicated checks, not keeping the indentation level low, and having
tons of things into a single function.
This commit gives more correct names to variables, deduplicates the
device checking code, and splits ExecuteCommand so that it's
easier to read.
It's worth noting that some device checks have been forgotten in the
past, which has caused a bug (which was recently fixed in 288e75f6).
This fixes a bug which caused Movie (input recording or playback) or
netplay not to be stopped. DolphinWX previously triggered a STM power
event, and then the STM directly stopped the emulation; the code
which stops Movie/Netplay was completely skipped.
This is fixed by moving it /before/ sending the shutdown event.
OnBootDrive used the "drives" member std::vector for drive paths, but
since PR #4363, this vector is not populated anymore, so we were
accessing it out of bounds.
Actually, drives was not needed in the first place, since we can
get the wxMenu from the event, and from there, get the label directly.
JUTWarningConsole_f calls vprintf, but in a way we currently don't
handle (which messes up the printed message). However, it is a standard
debug print function, so we can directly hook it instead of waiting for
the vprintf call.
This is necessary to fix debug output in a few games now that vprintf
is properly detected in more games.
The signature DB is very helpful for generating a symbol map for games
which don't ship with debugging symbols, since it includes signatures
for common SDK functions.
However, it isn't very complete and only contained signatures for GC
games -- the current database isn't very helpful for Wii games, which
still have a huge number of unknown functions even after using this DB.
Yet Wii games typically share a lot of code (since they all use the
SDK), and not having symbols makes it a lot harder to look into what
a game is doing… So this commit adds common Wii SDK function signatures
to the database, in order to make generated symbol maps a lot more
useful for Wii games.
The debug info comes from the debugging map that was left in the Wii
version of The Legend of Zelda: Twilight Princess. To avoid cluttering
the DB with game-specific debug info (even though it already contains
some game-specific symbols), some basic filtering was done on the
shipped symbol map:
egrep '(section layout|\.a|m_Do|lib|Lib| OS)' tp-framework.map | grep -v Z2 > common-wii-sdk.map
Then this map was loaded in Twilight Princess, and "append to existing
signature file" was used to append the new hashes to totaldb.dsy.
Making changes to ConfigManager.h has always been a pain, because
it means rebuilding half of Dolphin, since a lot of files depend on
and include this header.
However, it turns out some includes are unnecessary. This commit
removes ConfigManager includes from files which don't contain
SConfig or GPUDeterminismMode or GPU_DETERMINISM (which means the
ConfigManager include is not used).
(I've also had to get rid of some indirect includes.)