Finish moving cont.cpp functions to ultramodern

This commit is contained in:
angie 2024-06-05 14:10:17 -04:00
parent 0ce61d3e75
commit ad45f73007
7 changed files with 132 additions and 93 deletions

View file

@ -41,7 +41,7 @@ namespace recomp {
void set_rom_contents(std::vector<uint8_t>&& new_rom); void set_rom_contents(std::vector<uint8_t>&& new_rom);
void do_rom_read(uint8_t* rdram, gpr ram_address, uint32_t physical_addr, size_t num_bytes); void do_rom_read(uint8_t* rdram, gpr ram_address, uint32_t physical_addr, size_t num_bytes);
void do_rom_pio(uint8_t* rdram, gpr ram_address, uint32_t physical_addr); void do_rom_pio(uint8_t* rdram, gpr ram_address, uint32_t physical_addr);
void start(ultramodern::WindowHandle window_handle, const recomp::rsp::callbacks_t& rsp_callbacks, const ultramodern::audio_callbacks_t& audio_callbacks, const ultramodern::input_callbacks_t& input_callbacks, const ultramodern::gfx_callbacks_t& gfx_callbacks, const ultramodern::events::callbacks_t& thread_callbacks, const ultramodern::error_handling::callbacks_t& error_handling_callbacks_); void start(ultramodern::WindowHandle window_handle, const recomp::rsp::callbacks_t& rsp_callbacks, const ultramodern::audio_callbacks_t& audio_callbacks, const ultramodern::input::callbacks_t& input_callbacks, const ultramodern::gfx_callbacks_t& gfx_callbacks, const ultramodern::events::callbacks_t& thread_callbacks, const ultramodern::error_handling::callbacks_t& error_handling_callbacks_);
void start_game(const std::u8string& game_id); void start_game(const std::u8string& game_id);
std::u8string current_game_id(); std::u8string current_game_id();
} }

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@ -1,14 +1,7 @@
#include <ultramodern/ultramodern.hpp> #include "ultramodern/ultramodern.hpp"
#include "helpers.hpp" #include "helpers.hpp"
static ultramodern::input_callbacks_t input_callbacks;
std::chrono::high_resolution_clock::time_point input_poll_time;
void update_poll_time() {
input_poll_time = std::chrono::high_resolution_clock::now();
}
extern "C" void recomp_set_current_frame_poll_id(uint8_t* rdram, recomp_context* ctx) { extern "C" void recomp_set_current_frame_poll_id(uint8_t* rdram, recomp_context* ctx) {
// TODO reimplement the system for tagging polls with IDs to handle games with multithreaded input polling. // TODO reimplement the system for tagging polls with IDs to handle games with multithreaded input polling.
} }
@ -17,14 +10,6 @@ extern "C" void recomp_measure_latency(uint8_t* rdram, recomp_context* ctx) {
ultramodern::measure_input_latency(); ultramodern::measure_input_latency();
} }
void ultramodern::measure_input_latency() {
// printf("Delta: %ld micros\n", std::chrono::duration_cast<std::chrono::microseconds>(std::chrono::high_resolution_clock::now() - input_poll_time));
}
void set_input_callbacks(const ultramodern::input_callbacks_t& callbacks) {
input_callbacks = callbacks;
}
static int max_controllers = 0; static int max_controllers = 0;
extern "C" void osContInit_recomp(uint8_t* rdram, recomp_context* ctx) { extern "C" void osContInit_recomp(uint8_t* rdram, recomp_context* ctx) {
@ -47,38 +32,17 @@ extern "C" void osContReset_recomp(uint8_t* rdram, recomp_context* ctx) {
} }
extern "C" void osContStartReadData_recomp(uint8_t* rdram, recomp_context* ctx) { extern "C" void osContStartReadData_recomp(uint8_t* rdram, recomp_context* ctx) {
if (input_callbacks.poll_input) { PTR(OSMesgQueue) mq = _arg<0, PTR(OSMesgQueue)>(rdram, ctx);
input_callbacks.poll_input();
}
update_poll_time();
ultramodern::send_si_message(rdram); s32 ret = osContStartReadData(PASS_RDRAM mq);
_return<s32>(ctx, ret);
} }
extern "C" void osContGetReadData_recomp(uint8_t* rdram, recomp_context* ctx) { extern "C" void osContGetReadData_recomp(uint8_t* rdram, recomp_context* ctx) {
PTR(void) pad = _arg<0, PTR(void)>(rdram, ctx); PTR(OSContPad) data = _arg<0, PTR(OSContPad)>(rdram, ctx);
uint16_t buttons = 0; osContGetReadData(PASS_RDRAM data);
float x = 0.0f;
float y = 0.0f;
if (input_callbacks.get_input) {
input_callbacks.get_input(&buttons, &x, &y);
}
if (max_controllers > 0) {
// button
MEM_H(0, pad) = buttons;
// stick_x
MEM_B(2, pad) = (int8_t)(127 * x);
// stick_y
MEM_B(3, pad) = (int8_t)(127 * y);
// errno
MEM_B(4, pad) = 0;
}
for (int controller = 1; controller < max_controllers; controller++) {
MEM_B(6 * controller + 4, pad) = 0x80 >> 4; // errno: CONT_NO_RESPONSE_ERROR >> 4
}
} }
extern "C" void osContStartQuery_recomp(uint8_t * rdram, recomp_context * ctx) { extern "C" void osContStartQuery_recomp(uint8_t * rdram, recomp_context * ctx) {
@ -104,46 +68,36 @@ extern "C" void osContSetCh_recomp(uint8_t* rdram, recomp_context* ctx) {
} }
extern "C" void __osMotorAccess_recomp(uint8_t* rdram, recomp_context* ctx) { extern "C" void __osMotorAccess_recomp(uint8_t* rdram, recomp_context* ctx) {
PTR(void) pfs = _arg<0, PTR(void)>(rdram, ctx); PTR(OSPfs) pfs = _arg<0, PTR(OSPfs)>(rdram, ctx);
s32 flag = _arg<1, s32>(rdram, ctx); s32 flag = _arg<1, s32>(rdram, ctx);
s32 channel = MEM_W(8, pfs);
// Only respect accesses to controller 0. s32 ret = __osMotorAccess(PASS_RDRAM pfs, flag);
if (channel == 0) {
input_callbacks.set_rumble(flag);
}
_return<s32>(ctx, 0); _return<s32>(ctx, ret);
} }
extern "C" void osMotorInit_recomp(uint8_t* rdram, recomp_context* ctx) { extern "C" void osMotorInit_recomp(uint8_t* rdram, recomp_context* ctx) {
PTR(void) pfs = _arg<1, PTR(void)>(rdram, ctx); PTR(OSMesgQueue) mq = _arg<0, PTR(OSMesgQueue)>(rdram, ctx);
s32 channel = _arg<2, s32>(rdram, ctx); PTR(OSPfs) pfs = _arg<1, PTR(OSPfs)>(rdram, ctx);
MEM_W(8, pfs) = channel; int channel = _arg<2, s32>(rdram, ctx);
_return<s32>(ctx, 0); s32 ret = osMotorInit(PASS_RDRAM mq, pfs, channel);
_return<s32>(ctx, ret);
} }
extern "C" void osMotorStart_recomp(uint8_t* rdram, recomp_context* ctx) { extern "C" void osMotorStart_recomp(uint8_t* rdram, recomp_context* ctx) {
PTR(void) pfs = _arg<0, PTR(void)>(rdram, ctx); PTR(OSPfs) pfs = _arg<0, PTR(OSPfs)>(rdram, ctx);
s32 channel = MEM_W(8, pfs);
// Only respect accesses to controller 0. s32 ret = osMotorStart(PASS_RDRAM pfs);
if (channel == 0) {
input_callbacks.set_rumble(true);
}
_return<s32>(ctx, 0); _return<s32>(ctx, ret);
} }
extern "C" void osMotorStop_recomp(uint8_t* rdram, recomp_context* ctx) { extern "C" void osMotorStop_recomp(uint8_t* rdram, recomp_context* ctx) {
PTR(void) pfs = _arg<0, PTR(void)>(rdram, ctx); PTR(OSPfs) pfs = _arg<0, PTR(OSPfs)>(rdram, ctx);
s32 channel = MEM_W(8, pfs);
// Only respect accesses to controller 0. s32 ret = osMotorStop(PASS_RDRAM pfs);
if (channel == 0) {
input_callbacks.set_rumble(false);
}
_return<s32>(ctx, 0); _return<s32>(ctx, ret);
} }

View file

@ -379,8 +379,6 @@ bool ultramodern::is_game_started() {
return game_status.load() != GameStatus::None; return game_status.load() != GameStatus::None;
} }
void set_input_callbacks(const ultramodern::input_callbacks_t& callback);
std::atomic_bool exited = false; std::atomic_bool exited = false;
void ultramodern::quit() { void ultramodern::quit() {
@ -392,7 +390,7 @@ void ultramodern::quit() {
current_game.reset(); current_game.reset();
} }
void recomp::start(ultramodern::WindowHandle window_handle, const recomp::rsp::callbacks_t& rsp_callbacks, const ultramodern::audio_callbacks_t& audio_callbacks, const ultramodern::input_callbacks_t& input_callbacks, const ultramodern::gfx_callbacks_t& gfx_callbacks_, const ultramodern::events::callbacks_t& thread_callbacks_, const ultramodern::error_handling::callbacks_t& error_handling_callbacks_) { void recomp::start(ultramodern::WindowHandle window_handle, const recomp::rsp::callbacks_t& rsp_callbacks, const ultramodern::audio_callbacks_t& audio_callbacks, const ultramodern::input::callbacks_t& input_callbacks, const ultramodern::gfx_callbacks_t& gfx_callbacks_, const ultramodern::events::callbacks_t& thread_callbacks_, const ultramodern::error_handling::callbacks_t& error_handling_callbacks_) {
recomp::check_all_stored_roms(); recomp::check_all_stored_roms();
recomp::rsp::set_callbacks(rsp_callbacks); recomp::rsp::set_callbacks(rsp_callbacks);
@ -404,8 +402,6 @@ void recomp::start(ultramodern::WindowHandle window_handle, const recomp::rsp::c
ultramodern::set_callbacks(ultramodern_rsp_callbacks, audio_callbacks, input_callbacks, gfx_callbacks_, thread_callbacks_, error_handling_callbacks_); ultramodern::set_callbacks(ultramodern_rsp_callbacks, audio_callbacks, input_callbacks, gfx_callbacks_, thread_callbacks_, error_handling_callbacks_);
set_input_callbacks(input_callbacks);
ultramodern::gfx_callbacks_t gfx_callbacks = gfx_callbacks_; ultramodern::gfx_callbacks_t gfx_callbacks = gfx_callbacks_;
ultramodern::gfx_callbacks_t::gfx_data_t gfx_data{}; ultramodern::gfx_callbacks_t::gfx_data_t gfx_data{};

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@ -214,6 +214,28 @@ typedef struct {
OSViFieldRegs fldRegs[2]; OSViFieldRegs fldRegs[2];
} OSViMode; } OSViMode;
/*
* Structure for file system
*/
typedef struct {
int status;
PTR(OSMesgQueue) queue;
int channel;
u8 id[32]; // TODO: funky endianness here
u8 label[32]; // TODO: funky endianness here
int version;
int dir_size;
int inode_table; /* block location */
int minode_table; /* mirrioring inode_table */
int dir_table; /* block location */
int inode_start_page; /* page # */
// Padding and reversed members due to endianness
u8 padding[2];
u8 activebank;
u8 banks;
} OSPfs;
// Controller // Controller
typedef struct { typedef struct {
@ -285,6 +307,13 @@ s32 osContSetCh(RDRAM_ARG u8);
void osContGetQuery(RDRAM_ARG PTR(OSContStatus)); void osContGetQuery(RDRAM_ARG PTR(OSContStatus));
void osContGetReadData(RDRAM_ARG PTR(OSContPad)); void osContGetReadData(RDRAM_ARG PTR(OSContPad));
/* Rumble PAK interface */
s32 osMotorInit(RDRAM_ARG PTR(OSMesgQueue), PTR(OSPfs), int);
s32 osMotorStop(RDRAM_ARG PTR(OSPfs));
s32 osMotorStart(RDRAM_ARG PTR(OSPfs));
s32 __osMotorAccess(RDRAM_ARG PTR(OSPfs), s32);
#ifdef __cplusplus #ifdef __cplusplus
} // extern "C" } // extern "C"
#endif #endif

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@ -27,6 +27,7 @@
#include "ultramodern/error_handling.hpp" #include "ultramodern/error_handling.hpp"
#include "ultramodern/events.hpp" #include "ultramodern/events.hpp"
#include "ultramodern/input.hpp"
#include "ultramodern/rsp.hpp" #include "ultramodern/rsp.hpp"
struct UltraThreadContext { struct UltraThreadContext {
@ -142,17 +143,6 @@ struct audio_callbacks_t {
set_frequency_t* set_frequency; set_frequency_t* set_frequency;
}; };
// TODO: These functions are currently called by librecomp, but will get called by ultramodern in the future
// Input
struct input_callbacks_t {
using poll_input_t = void(void);
using get_input_t = void(uint16_t*, float*, float*);
using set_rumble_t = void(bool);
poll_input_t* poll_input;
get_input_t* get_input;
set_rumble_t* set_rumble;
};
// TODO: Most of the members of this struct are not used by ultramodern. Should we move them to librecomp instead? // TODO: Most of the members of this struct are not used by ultramodern. Should we move them to librecomp instead?
struct gfx_callbacks_t { struct gfx_callbacks_t {
using gfx_data_t = void*; using gfx_data_t = void*;
@ -178,7 +168,7 @@ void set_audio_callbacks(const audio_callbacks_t& callbacks);
* *
* It must be called only once and it must be called before `ultramodern::preinit`. * It must be called only once and it must be called before `ultramodern::preinit`.
*/ */
void set_callbacks(const rsp::callbacks_t& rsp_callbacks, const audio_callbacks_t& audio_callbacks, const input_callbacks_t& input_callbacks, const gfx_callbacks_t& gfx_callbacks, const events::callbacks_t& events_callbacks, const error_handling::callbacks_t& error_handling_callbacks); void set_callbacks(const rsp::callbacks_t& rsp_callbacks, const audio_callbacks_t& audio_callbacks, const input::callbacks_t& input_callbacks, const gfx_callbacks_t& gfx_callbacks, const events::callbacks_t& events_callbacks, const error_handling::callbacks_t& error_handling_callbacks);
} // namespace ultramodern } // namespace ultramodern
#define MIN(a, b) ((a) < (b) ? (a) : (b)) #define MIN(a, b) ((a) < (b) ? (a) : (b))

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@ -10,10 +10,24 @@ void ultramodern::input::set_callbacks(const callbacks_t& callbacks) {
input_callbacks = callbacks; input_callbacks = callbacks;
} }
static std::chrono::high_resolution_clock::time_point input_poll_time;
static void update_poll_time() {
input_poll_time = std::chrono::high_resolution_clock::now();
}
void ultramodern::measure_input_latency() {
#if 0
printf("Delta: %ld micros\n", std::chrono::duration_cast<std::chrono::microseconds>(std::chrono::high_resolution_clock::now() - input_poll_time));
#endif
}
#define MAXCONTROLLERS 4 #define MAXCONTROLLERS 4
static int max_controllers = 0; static int max_controllers = 0;
/* Plain controller */
static void __osContGetInitData(u8* pattern, OSContStatus *data) { static void __osContGetInitData(u8* pattern, OSContStatus *data) {
// Set bit 0 to indicate that controller 0 is present // Set bit 0 to indicate that controller 0 is present
*pattern = 0x01; *pattern = 0x01;
@ -52,7 +66,14 @@ extern "C" s32 osContStartQuery(RDRAM_ARG PTR(OSMesgQueue) mq) {
} }
extern "C" s32 osContStartReadData(RDRAM_ARG PTR(OSMesgQueue) mq) { extern "C" s32 osContStartReadData(RDRAM_ARG PTR(OSMesgQueue) mq) {
assert(false); if (input_callbacks.poll_input != nullptr) {
input_callbacks.poll_input();
}
update_poll_time();
ultramodern::send_si_message(rdram);
return 0;
} }
extern "C" s32 osContSetCh(RDRAM_ARG u8 ch) { extern "C" s32 osContSetCh(RDRAM_ARG u8 ch) {
@ -62,12 +83,61 @@ extern "C" s32 osContSetCh(RDRAM_ARG u8 ch) {
} }
extern "C" void osContGetQuery(RDRAM_ARG PTR(OSContStatus) data_) { extern "C" void osContGetQuery(RDRAM_ARG PTR(OSContStatus) data_) {
u8 pattern;
OSContStatus *data = TO_PTR(OSContStatus, data_); OSContStatus *data = TO_PTR(OSContStatus, data_);
u8 pattern;
__osContGetInitData(&pattern, data); __osContGetInitData(&pattern, data);
} }
extern "C" void osContGetReadData(RDRAM_ARG PTR(OSContPad) data) { extern "C" void osContGetReadData(RDRAM_ARG PTR(OSContPad) data_) {
assert(false); OSContPad *data = TO_PTR(OSContPad, data_);
uint16_t buttons = 0;
float x = 0.0f;
float y = 0.0f;
if (input_callbacks.get_input != nullptr) {
input_callbacks.get_input(&buttons, &x, &y);
}
if (max_controllers > 0) {
// button
data[0].button = buttons;
data[0].stick_x = (int8_t)(127 * x);
data[0].stick_y = (int8_t)(127 * y);
data[0].err_no = 0;
}
for (int controller = 1; controller < max_controllers; controller++) {
data[controller].err_no = 0x80 >> 4; // errno: CONT_NO_RESPONSE_ERROR >> 4
}
}
/* Rumble */
s32 osMotorInit(RDRAM_ARG PTR(OSMesgQueue) mq, PTR(OSPfs) pfs_, int channel) {
OSPfs *pfs = TO_PTR(OSPfs, pfs_);
pfs->channel = channel;
return 0;
}
s32 osMotorStop(RDRAM_ARG PTR(OSPfs) pfs) {
return __osMotorAccess(PASS_RDRAM pfs, false);
}
s32 osMotorStart(RDRAM_ARG PTR(OSPfs) pfs) {
return __osMotorAccess(PASS_RDRAM pfs, true);
}
s32 __osMotorAccess(RDRAM_ARG PTR(OSPfs) pfs_, s32 flag) {
OSPfs *pfs = TO_PTR(OSPfs, pfs_);
// Only respect accesses to controller 0.
if (pfs->channel == 0) {
if (input_callbacks.set_rumble != nullptr) {
input_callbacks.set_rumble(flag);
}
}
return 0;
} }

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@ -4,14 +4,14 @@
void ultramodern::set_callbacks( void ultramodern::set_callbacks(
const rsp::callbacks_t& rsp_callbacks, const rsp::callbacks_t& rsp_callbacks,
const audio_callbacks_t& audio_callbacks, const audio_callbacks_t& audio_callbacks,
const input_callbacks_t& input_callbacks, const input::callbacks_t& input_callbacks,
const gfx_callbacks_t& gfx_callbacks, const gfx_callbacks_t& gfx_callbacks,
const events::callbacks_t& thread_callbacks, const events::callbacks_t& thread_callbacks,
const error_handling::callbacks_t& error_handling_callbacks const error_handling::callbacks_t& error_handling_callbacks
) { ) {
ultramodern::rsp::set_callbacks(rsp_callbacks); ultramodern::rsp::set_callbacks(rsp_callbacks);
ultramodern::set_audio_callbacks(audio_callbacks); ultramodern::set_audio_callbacks(audio_callbacks);
(void)input_callbacks; // nothing yet ultramodern::input::set_callbacks(input_callbacks);
(void)gfx_callbacks; // nothing yet (void)gfx_callbacks; // nothing yet
ultramodern::events::set_callbacks(thread_callbacks); ultramodern::events::set_callbacks(thread_callbacks);
ultramodern::error_handling::set_callbacks(error_handling_callbacks); ultramodern::error_handling::set_callbacks(error_handling_callbacks);