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|
/*
* Win32 window, input, StretchDIBits present, and waveOut audio.
* user32.dll, gdi32.dll, and winmm.dll are loaded at runtime.
*
* * 0.4.0 - @vasco - win32
* * 0.5.0 - @vasco - audio start/stop, s16le pull callback
*/
#ifndef WIN32_LEAN_AND_MEAN
#define WIN32_LEAN_AND_MEAN
#endif
/* windows.h must precede mmsystem.h */
#include <windows.h>
#include <mmsystem.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#ifdef PEAK_VULKAN
#define VK_USE_PLATFORM_WIN32_KHR
#include <vulkan/vulkan.h>
#endif
#define PEAK_WIN32_USER32 "user32.dll"
#define PEAK_WIN32_GDI32 "gdi32.dll"
#define PEAK_WIN32_WINMM "winmm.dll"
#define PEAK_WIN32_CLASS "PeakWindow"
#define PEAK_WIN32_PROP "Peak"
#define PEAK_AUDIO_FRAMES 256
#define PEAK_AUDIO_BUFFERS 2
#define PEAK_USER32_API(X) \
X(RegisterClassExA, ATOM, WINAPI, (const WNDCLASSEXA *)) \
X(UnregisterClassA, BOOL, WINAPI, (LPCSTR, HINSTANCE)) \
X(CreateWindowExA, HWND, WINAPI, (DWORD, LPCSTR, LPCSTR, DWORD, int, int, int, int, HWND, HMENU, HINSTANCE, LPVOID)) \
X(DestroyWindow, BOOL, WINAPI, (HWND)) \
X(ShowWindow, BOOL, WINAPI, (HWND, int)) \
X(GetDC, HDC, WINAPI, (HWND)) \
X(ReleaseDC, int, WINAPI, (HWND, HDC)) \
X(PeekMessageA, BOOL, WINAPI, (LPMSG, HWND, UINT, UINT, UINT)) \
X(TranslateMessage, BOOL, WINAPI, (const MSG *)) \
X(DispatchMessageA, LRESULT, WINAPI, (const MSG *)) \
X(DefWindowProcA, LRESULT, WINAPI, (HWND, UINT, WPARAM, LPARAM)) \
X(SetPropA, BOOL, WINAPI, (HWND, LPCSTR, HANDLE)) \
X(GetPropA, HANDLE, WINAPI, (HWND, LPCSTR)) \
X(RemovePropA, HANDLE, WINAPI, (HWND, LPCSTR)) \
X(BeginPaint, HDC, WINAPI, (HWND, LPPAINTSTRUCT)) \
X(EndPaint, BOOL, WINAPI, (HWND, const PAINTSTRUCT *)) \
X(AdjustWindowRectEx, BOOL, WINAPI, (LPRECT, DWORD, BOOL, DWORD)) \
X(LoadCursorA, HCURSOR, WINAPI, (HINSTANCE, LPCSTR)) \
X(GetKeyState, SHORT, WINAPI, (int))
#define PEAK_GDI32_API(X) \
X(StretchDIBits, int, WINAPI, (HDC, int, int, int, int, int, int, int, int, const void *, const BITMAPINFO *, UINT, DWORD))
#define PEAK_WINMM_API(X) \
X(waveOutOpen, MMRESULT, WINAPI, (LPHWAVEOUT, UINT, LPCWAVEFORMATEX, DWORD_PTR, DWORD_PTR, DWORD)) \
X(waveOutClose, MMRESULT, WINAPI, (HWAVEOUT)) \
X(waveOutPrepareHeader, MMRESULT, WINAPI, (HWAVEOUT, LPWAVEHDR, UINT)) \
X(waveOutUnprepareHeader, MMRESULT, WINAPI, (HWAVEOUT, LPWAVEHDR, UINT)) \
X(waveOutWrite, MMRESULT, WINAPI, (HWAVEOUT, LPWAVEHDR, UINT)) \
X(waveOutReset, MMRESULT, WINAPI, (HWAVEOUT))
typedef struct {
#define X(name, ret, conv, args) ret (conv *name) args;
PEAK_USER32_API(X)
#undef X
} PeakUser32Api;
typedef struct {
#define X(name, ret, conv, args) ret (conv *name) args;
PEAK_GDI32_API(X)
#undef X
} PeakGdi32Api;
typedef struct {
#define X(name, ret, conv, args) ret (conv *name) args;
PEAK_WINMM_API(X)
#undef X
} PeakWinmmApi;
typedef struct {
volatile int run;
HANDLE thread;
HANDLE event;
HWAVEOUT out;
WAVEHDR hdr[PEAK_AUDIO_BUFFERS];
int16_t *pcm[PEAK_AUDIO_BUFFERS];
uint32_t channels;
uint32_t bytes;
void (*fill)(int16_t *out, size_t frames, void *userdata);
void *userdata;
} PeakAudio;
typedef struct {
HMODULE user32;
HMODULE gdi32;
int class_reg;
} PeakWin32;
struct peak_win32_win {
HWND hwnd;
HDC hdc;
uint32_t *buffer;
uint32_t width;
uint32_t height;
PeakQ q;
};
struct peak_window_internal_t {
struct peak_win32_win *w;
};
static int peak_internal_user32_load(HMODULE handle);
static int peak_internal_gdi32_load(HMODULE handle);
static PeakKeyCode peak_internal_win32_key_map(WPARAM vk);
static PeakKeyMod peak_internal_win32_mod_map(void);
static int peak_internal_win32_buffer(struct peak_win32_win *w, uint32_t width, uint32_t height);
static LRESULT CALLBACK peak_internal_win32_wndproc(HWND hwnd, UINT msg, WPARAM wparam, LPARAM lparam);
static int peak_platform_init(void);
static void peak_platform_quit(void);
static PeakWindowInternal peak_platform_window_open(const char *name, uint32_t width, uint32_t height, uint32_t flags);
static void peak_platform_window_close(PeakWindowInternal *intern);
static uint32_t *peak_platform_window_buffer(PeakWindowInternal *intern, size_t *width, size_t *height);
static void peak_platform_window_present(PeakWindowInternal *intern);
static bool peak_platform_epoll(PeakWindowInternal *intern, PeakEvent *ev);
static int peak_internal_winmm_load(void);
static void peak_internal_win32_audio_fill(int i);
static DWORD WINAPI peak_internal_win32_audio_thread(LPVOID arg);
static PeakWin32 peak_win32;
static PeakUser32Api peak_user32;
static PeakGdi32Api peak_gdi32;
static PeakWinmmApi peak_winmm;
static PeakAudio peak_audio;
static int
peak_internal_user32_load(HMODULE handle)
{
#define X(name, ret, conv, args) peak_user32.name = (ret (conv *) args)(void *)GetProcAddress(handle, #name);
PEAK_USER32_API(X)
#undef X
#define X(name, ret, conv, args) || !peak_user32.name
if (0 PEAK_USER32_API(X))
return 0;
#undef X
return 1;
}
static int
peak_internal_gdi32_load(HMODULE handle)
{
#define X(name, ret, conv, args) peak_gdi32.name = (ret (conv *) args)(void *)GetProcAddress(handle, #name);
PEAK_GDI32_API(X)
#undef X
#define X(name, ret, conv, args) || !peak_gdi32.name
if (0 PEAK_GDI32_API(X))
return 0;
#undef X
return 1;
}
static PeakKeyCode
peak_internal_win32_key_map(WPARAM vk)
{
if (vk >= 'A' && vk <= 'Z')
return (PeakKeyCode)(PEAK_KEY_A + (int)(vk - 'A'));
switch (vk) {
case VK_UP:
return PEAK_KEY_UP;
case VK_DOWN:
return PEAK_KEY_DOWN;
case VK_LEFT:
return PEAK_KEY_LEFT;
case VK_RIGHT:
return PEAK_KEY_RIGHT;
case VK_SPACE:
return PEAK_KEY_SPACE;
case VK_ESCAPE:
return PEAK_KEY_ESCAPE;
case VK_RETURN:
return PEAK_KEY_ENTER;
default:
return PEAK_KEY_UNKNOWN;
}
}
static PeakKeyMod
peak_internal_win32_mod_map(void)
{
if (peak_user32.GetKeyState(VK_CONTROL) & 0x8000)
return PEAK_KEYMOD_CTRL;
if (peak_user32.GetKeyState(VK_MENU) & 0x8000)
return PEAK_KEYMOD_ALT;
if (peak_user32.GetKeyState(VK_SHIFT) & 0x8000)
return PEAK_KEYMOD_SHIFT;
if (peak_user32.GetKeyState(VK_CAPITAL) & 1)
return PEAK_KEYMOD_CAPS;
return (PeakKeyMod)0;
}
static int
peak_internal_win32_buffer(struct peak_win32_win *w, uint32_t width, uint32_t height)
{
uint32_t *buffer;
if (!(buffer = calloc((size_t)width * height, sizeof(*buffer))))
return 0;
free(w->buffer);
w->buffer = buffer;
w->width = width;
w->height = height;
return 1;
}
static LRESULT CALLBACK
peak_internal_win32_wndproc(HWND hwnd, UINT msg, WPARAM wparam, LPARAM lparam)
{
struct peak_win32_win *w;
PeakEvent ev;
CREATESTRUCTA *cs;
if (msg == WM_NCCREATE) {
cs = (CREATESTRUCTA *)lparam;
peak_user32.SetPropA(hwnd, PEAK_WIN32_PROP, cs->lpCreateParams);
}
w = (struct peak_win32_win *)peak_user32.GetPropA(hwnd, PEAK_WIN32_PROP);
if (!w)
return peak_user32.DefWindowProcA(hwnd, msg, wparam, lparam);
switch (msg) {
case WM_CLOSE:
memset(&ev, 0, sizeof(ev));
ev.type = PEAK_EVENT_WINDOW_CLOSE;
peak_q_push(&w->q, ev);
return 0;
case WM_SIZE: {
uint32_t width, height;
if (wparam == SIZE_MINIMIZED)
return 0;
width = (uint32_t)LOWORD(lparam);
height = (uint32_t)HIWORD(lparam);
if (!width || !height || (width == w->width && height == w->height))
return 0;
if (!peak_internal_win32_buffer(w, width, height))
return 0;
memset(&ev, 0, sizeof(ev));
ev.type = PEAK_EVENT_WINDOW_RESIZE;
ev.resize.width = w->width;
ev.resize.height = w->height;
peak_q_push(&w->q, ev);
return 0;
}
case WM_KEYDOWN: /* FALLTHROUGH */
case WM_KEYUP: /* FALLTHROUGH */
case WM_SYSKEYDOWN: /* FALLTHROUGH */
case WM_SYSKEYUP:
memset(&ev, 0, sizeof(ev));
ev.type = (msg == WM_KEYDOWN || msg == WM_SYSKEYDOWN) ? PEAK_EVENT_KEY_DOWN : PEAK_EVENT_KEY_UP;
ev.key.key = peak_internal_win32_key_map(wparam);
ev.key.mod = peak_internal_win32_mod_map();
peak_q_push(&w->q, ev);
return 0;
case WM_MOUSEMOVE: /* FALLTHROUGH */
case WM_LBUTTONDOWN: /* FALLTHROUGH */
case WM_LBUTTONUP: /* FALLTHROUGH */
case WM_RBUTTONDOWN: /* FALLTHROUGH */
case WM_RBUTTONUP: /* FALLTHROUGH */
case WM_MBUTTONDOWN: /* FALLTHROUGH */
case WM_MBUTTONUP:
memset(&ev, 0, sizeof(ev));
ev.type = PEAK_EVENT_POINTER;
ev.pointer.x = (float)(short)LOWORD(lparam);
ev.pointer.y = (float)(short)HIWORD(lparam);
if (msg == WM_MOUSEMOVE) {
ev.pointer.state = PEAK_POINTER_MOVED;
ev.pointer.type = (wparam & MK_RBUTTON) ? PEAK_POINTER_RIGHT :
(wparam & MK_MBUTTON) ? PEAK_POINTER_MIDDLE : PEAK_POINTER_LEFT;
} else if (msg == WM_LBUTTONDOWN || msg == WM_RBUTTONDOWN || msg == WM_MBUTTONDOWN) {
ev.pointer.state = PEAK_POINTER_PRESSED;
ev.pointer.type = (msg == WM_RBUTTONDOWN) ? PEAK_POINTER_RIGHT :
(msg == WM_MBUTTONDOWN) ? PEAK_POINTER_MIDDLE : PEAK_POINTER_LEFT;
} else {
ev.pointer.state = PEAK_POINTER_RELEASED;
ev.pointer.type = (msg == WM_RBUTTONUP) ? PEAK_POINTER_RIGHT :
(msg == WM_MBUTTONUP) ? PEAK_POINTER_MIDDLE : PEAK_POINTER_LEFT;
}
peak_q_push(&w->q, ev);
return 0;
case WM_PAINT: {
PAINTSTRUCT ps;
peak_user32.BeginPaint(hwnd, &ps);
peak_user32.EndPaint(hwnd, &ps);
return 0;
}
case WM_ERASEBKGND:
return 1;
case WM_DESTROY:
peak_user32.RemovePropA(hwnd, PEAK_WIN32_PROP);
return 0;
default:
return peak_user32.DefWindowProcA(hwnd, msg, wparam, lparam);
}
}
static int
peak_platform_init(void)
{
WNDCLASSEXA wc;
if (!peak_user32.CreateWindowExA) {
if (!(peak_win32.user32 = LoadLibraryA(PEAK_WIN32_USER32))) {
fputs("Failed to load user32.dll. What system are you fucking using and abusing?", stderr);
return 0;
}
if (!peak_internal_user32_load(peak_win32.user32)) {
fputs("Failed to load user32 symbols", stderr);
return 0;
}
}
if (!peak_gdi32.StretchDIBits) {
if (!(peak_win32.gdi32 = LoadLibraryA(PEAK_WIN32_GDI32))) {
fputs("Failed to load gdi32.dll. What system are you fucking using and abusing?", stderr);
return 0;
}
if (!peak_internal_gdi32_load(peak_win32.gdi32)) {
fputs("Failed to load gdi32 symbols", stderr);
return 0;
}
}
if (!peak_win32.class_reg) {
memset(&wc, 0, sizeof(wc));
wc.cbSize = sizeof(wc);
wc.style = CS_OWNDC;
wc.lpfnWndProc = peak_internal_win32_wndproc;
wc.hInstance = GetModuleHandleA(NULL);
wc.hCursor = peak_user32.LoadCursorA(NULL, IDC_ARROW);
wc.lpszClassName = PEAK_WIN32_CLASS;
if (!peak_user32.RegisterClassExA(&wc) && GetLastError() != ERROR_CLASS_ALREADY_EXISTS) {
fputs("Failed to register window class", stderr);
return 0;
}
peak_win32.class_reg = 1;
}
return 1;
}
static void
peak_platform_quit(void)
{
if (!peak_win32.class_reg)
return;
peak_user32.UnregisterClassA(PEAK_WIN32_CLASS, GetModuleHandleA(NULL));
peak_win32.class_reg = 0;
}
static PeakWindowInternal
peak_platform_window_open(const char *name, uint32_t width, uint32_t height, uint32_t flags)
{
PeakWindowInternal intern = {0};
struct peak_win32_win *w;
DWORD style, ex;
RECT r;
HINSTANCE inst;
(void)flags;
if (!peak_user32.CreateWindowExA && !peak_platform_init())
return intern;
if (!(w = calloc(1, sizeof(*w))))
return intern;
if (!peak_internal_win32_buffer(w, width, height)) {
free(w);
return intern;
}
ex = 0;
style = WS_OVERLAPPEDWINDOW;
r.left = 0;
r.top = 0;
r.right = (LONG)width;
r.bottom = (LONG)height;
peak_user32.AdjustWindowRectEx(&r, style, FALSE, ex);
inst = GetModuleHandleA(NULL);
w->hwnd = peak_user32.CreateWindowExA(ex, PEAK_WIN32_CLASS, name, style,
CW_USEDEFAULT, CW_USEDEFAULT, r.right - r.left, r.bottom - r.top,
NULL, NULL, inst, w);
if (!w->hwnd) {
free(w->buffer);
free(w);
return intern;
}
w->hdc = peak_user32.GetDC(w->hwnd);
if (!w->hdc) {
peak_user32.DestroyWindow(w->hwnd);
free(w->buffer);
free(w);
return intern;
}
peak_user32.ShowWindow(w->hwnd, SW_SHOWNORMAL);
intern.w = w;
return intern;
}
static void
peak_platform_window_close(PeakWindowInternal *intern)
{
struct peak_win32_win *w;
if (!intern || !intern->w)
return;
w = intern->w;
if (w->hdc && w->hwnd)
peak_user32.ReleaseDC(w->hwnd, w->hdc);
if (w->hwnd) {
peak_user32.RemovePropA(w->hwnd, PEAK_WIN32_PROP);
peak_user32.DestroyWindow(w->hwnd);
}
free(w->buffer);
free(w);
intern->w = NULL;
}
static uint32_t *
peak_platform_window_buffer(PeakWindowInternal *intern, size_t *width, size_t *height)
{
struct peak_win32_win *w;
w = intern ? intern->w : NULL;
if (!w) {
*width = 0;
*height = 0;
return NULL;
}
*width = w->width;
*height = w->height;
return w->buffer;
}
static void
peak_platform_window_present(PeakWindowInternal *intern)
{
struct peak_win32_win *w;
BITMAPINFO bmi;
w = intern ? intern->w : NULL;
if (!w || !w->hwnd || !w->hdc || !w->buffer)
return;
memset(&bmi, 0, sizeof(bmi));
bmi.bmiHeader.biSize = sizeof(BITMAPINFOHEADER);
bmi.bmiHeader.biWidth = (LONG)w->width;
bmi.bmiHeader.biHeight = -(LONG)w->height;
bmi.bmiHeader.biPlanes = 1;
bmi.bmiHeader.biBitCount = 32;
bmi.bmiHeader.biCompression = BI_RGB;
peak_gdi32.StretchDIBits(w->hdc,
0, 0, (int)w->width, (int)w->height,
0, 0, (int)w->width, (int)w->height,
w->buffer, &bmi, DIB_RGB_COLORS, SRCCOPY);
}
static bool
peak_platform_epoll(PeakWindowInternal *intern, PeakEvent *ev)
{
MSG msg;
struct peak_win32_win *w;
w = intern ? intern->w : NULL;
if (!w || !w->hwnd)
return 0;
while (peak_user32.PeekMessageA(&msg, w->hwnd, 0, 0, PM_REMOVE)) {
peak_user32.TranslateMessage(&msg);
peak_user32.DispatchMessageA(&msg);
if (peak_q_pop(&w->q, ev))
return 1;
}
return peak_q_pop(&w->q, ev);
}
static int
peak_internal_winmm_load(void)
{
HMODULE handle;
if (peak_winmm.waveOutOpen)
return 1;
if (!(handle = LoadLibraryA(PEAK_WIN32_WINMM))) {
fputs("Failed to load winmm.dll. What system are you fucking using and abusing?", stderr);
return 0;
}
#define X(name, ret, conv, args) peak_winmm.name = (ret (conv *) args)(void *)GetProcAddress(handle, #name);
PEAK_WINMM_API(X)
#undef X
#define X(name, ret, conv, args) || !peak_winmm.name
if (0 PEAK_WINMM_API(X)) {
fputs("Failed to load winmm symbols", stderr);
return 0;
}
#undef X
return 1;
}
static void
peak_internal_win32_audio_fill(int i)
{
memset(peak_audio.pcm[i], 0, peak_audio.bytes);
if (peak_audio.fill)
peak_audio.fill(peak_audio.pcm[i], PEAK_AUDIO_FRAMES, peak_audio.userdata);
peak_winmm.waveOutWrite(peak_audio.out, &peak_audio.hdr[i], sizeof(WAVEHDR));
}
static DWORD WINAPI
peak_internal_win32_audio_thread(LPVOID arg)
{
int i, did;
(void)arg;
for (;;) {
did = 0;
if (!peak_audio.run)
break;
for (i = 0; i < PEAK_AUDIO_BUFFERS; i++) {
if (peak_audio.hdr[i].dwFlags & WHDR_DONE) {
peak_internal_win32_audio_fill(i);
did = 1;
}
}
if (did)
continue;
WaitForSingleObject(peak_audio.event, INFINITE);
ResetEvent(peak_audio.event);
}
return 0;
}
static int
peak_platform_audio_start(uint32_t channels, uint32_t rate, void (*fill)(int16_t *out, size_t frames, void *userdata), void *userdata)
{
WAVEFORMATEX fmt;
int i;
if (channels > 32)
return 0;
if (!peak_internal_winmm_load())
return 0;
memset(&fmt, 0, sizeof(fmt));
fmt.wFormatTag = WAVE_FORMAT_PCM;
fmt.nChannels = (WORD)channels;
fmt.nSamplesPerSec = rate;
fmt.wBitsPerSample = 16;
fmt.nBlockAlign = (WORD)(channels * 2);
fmt.nAvgBytesPerSec = rate * fmt.nBlockAlign;
peak_audio.event = CreateEventA(NULL, TRUE, FALSE, NULL);
if (!peak_audio.event)
return 0;
if (peak_winmm.waveOutOpen(&peak_audio.out, WAVE_MAPPER, &fmt, (DWORD_PTR)peak_audio.event, 0, CALLBACK_EVENT) != MMSYSERR_NOERROR) {
CloseHandle(peak_audio.event);
peak_audio.event = NULL;
fputs("Failed to open waveOut device", stderr);
return 0;
}
peak_audio.channels = channels;
peak_audio.bytes = (uint32_t)channels * PEAK_AUDIO_FRAMES * sizeof(int16_t);
peak_audio.fill = fill;
peak_audio.userdata = userdata;
peak_audio.run = 1;
for (i = 0; i < PEAK_AUDIO_BUFFERS; i++) {
if (!(peak_audio.pcm[i] = calloc(1, peak_audio.bytes)))
goto fail;
memset(&peak_audio.hdr[i], 0, sizeof(peak_audio.hdr[i]));
peak_audio.hdr[i].lpData = (LPSTR)peak_audio.pcm[i];
peak_audio.hdr[i].dwBufferLength = peak_audio.bytes;
if (peak_winmm.waveOutPrepareHeader(peak_audio.out, &peak_audio.hdr[i], sizeof(WAVEHDR)) != MMSYSERR_NOERROR)
goto fail;
peak_audio.hdr[i].dwFlags |= WHDR_DONE;
}
for (i = 0; i < PEAK_AUDIO_BUFFERS; i++)
peak_internal_win32_audio_fill(i);
peak_audio.thread = CreateThread(NULL, 0, peak_internal_win32_audio_thread, NULL, 0, NULL);
if (!peak_audio.thread)
goto fail;
return 1;
fail:
peak_platform_audio_stop();
return 0;
}
static uint64_t
peak_platform_get_time(void)
{
LARGE_INTEGER count, freq;
QueryPerformanceCounter(&count);
QueryPerformanceFrequency(&freq);
return (uint64_t)((count.QuadPart * 1000000000ull) / freq.QuadPart);
}
static void
peak_platform_sleep_ns(int64_t ns)
{
if (ns <= 0) return;
Sleep((DWORD)(ns / 1000000));
}
static const char **
peak_platform_vulkan_get_extensions(uint32_t *count)
{
static const char *exts[] = {
"VK_KHR_surface",
"VK_KHR_win32_surface",
};
if (count) *count = 2;
return exts;
}
static int
peak_platform_vulkan_create_surface(PeakWindowInternal *intern, void *instance, const void *allocator, void *out_surface)
{
#ifdef PEAK_VULKAN
VkWin32SurfaceCreateInfoKHR ci;
if (!intern || !intern->w || !intern->w->hwnd) return 0;
memset(&ci, 0, sizeof ci);
ci.sType = VK_STRUCTURE_TYPE_WIN32_SURFACE_CREATE_INFO_KHR;
ci.hwnd = intern->w->hwnd;
ci.hinstance = GetModuleHandleA(NULL);
return vkCreateWin32SurfaceKHR((VkInstance)instance, &ci, (const VkAllocationCallbacks *)allocator, (VkSurfaceKHR *)out_surface) == VK_SUCCESS;
#else
(void)intern; (void)instance; (void)allocator; (void)out_surface;
return 0;
#endif
}
static void
peak_platform_audio_stop(void)
{
int i;
peak_audio.run = 0;
if (peak_audio.event)
SetEvent(peak_audio.event);
if (peak_audio.thread) {
WaitForSingleObject(peak_audio.thread, INFINITE);
CloseHandle(peak_audio.thread);
peak_audio.thread = NULL;
}
if (peak_audio.out) {
peak_winmm.waveOutReset(peak_audio.out);
for (i = 0; i < PEAK_AUDIO_BUFFERS; i++) {
if (peak_audio.hdr[i].dwFlags & WHDR_PREPARED)
peak_winmm.waveOutUnprepareHeader(peak_audio.out, &peak_audio.hdr[i], sizeof(WAVEHDR));
free(peak_audio.pcm[i]);
peak_audio.pcm[i] = NULL;
memset(&peak_audio.hdr[i], 0, sizeof(peak_audio.hdr[i]));
}
peak_winmm.waveOutClose(peak_audio.out);
peak_audio.out = NULL;
}
if (peak_audio.event) {
CloseHandle(peak_audio.event);
peak_audio.event = NULL;
}
peak_audio.fill = NULL;
peak_audio.userdata = NULL;
}
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