Update Kha/Backends/Kinc-HL/kinc-bridge/kinc.c.h
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@ -1,127 +1,129 @@
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#include <kinc/audio2/audio.h>
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#include <kinc/graphics4/graphics.h>
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#include <kinc/io/filereader.h>
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#include <kinc/log.h>
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#include <kinc/system.h>
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#include <kinc/window.h>
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#include <hl.h>
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void frame();
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static bool visible = true;
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static bool paused = false;
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typedef void (*FN_AUDIO_CALL_CALLBACK)(int);
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typedef float (*FN_AUDIO_READ_SAMPLE)(void);
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void (*audioCallCallback)(int);
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float (*audioReadSample)(void);
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static void update(void *data) {
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if (paused) {
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return;
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}
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kinc_a2_update();
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int windowCount = kinc_count_windows();
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for (int windowIndex = 0; windowIndex < windowCount; ++windowIndex) {
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if (visible) {
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kinc_g4_begin(windowIndex);
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frame();
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kinc_g4_end(windowIndex);
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}
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}
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if (!kinc_g4_swap_buffers()) {
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kinc_log(KINC_LOG_LEVEL_ERROR, "Graphics context lost.");
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}
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}
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static bool mixThreadregistered = false;
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static void mix(kinc_a2_buffer_t *buffer, int samples) {
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#ifdef KORE_MULTITHREADED_AUDIO
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if (!mixThreadregistered) {
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vdynamic *ret;
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hl_register_thread(&ret);
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mixThreadregistered = true;
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}
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hl_blocking(true);
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#endif
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audioCallCallback(samples);
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for (int i = 0; i < samples; ++i) {
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float value = audioReadSample();
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*(float *)&buffer->data[buffer->write_location] = value;
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buffer->write_location += 4;
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if (buffer->write_location >= buffer->data_size) {
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buffer->write_location = 0;
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}
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}
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#ifdef KORE_MULTITHREADED_AUDIO
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hl_blocking(false);
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#endif
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}
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void hl_init_kore(vbyte *title, int width, int height, int samplesPerPixel, bool vSync, int windowMode, int windowFeatures) {
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kinc_log(KINC_LOG_LEVEL_INFO, "Starting KincHL");
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kinc_window_options_t win;
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kinc_window_options_set_defaults(&win);
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win.title = (char *)title;
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win.width = width;
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win.height = height;
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win.x = -1;
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win.y = -1;
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win.mode = (kinc_window_mode_t)windowMode;
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win.window_features = windowFeatures;
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kinc_framebuffer_options_t frame;
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kinc_framebuffer_options_set_defaults(&frame);
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frame.vertical_sync = vSync;
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frame.samples_per_pixel = samplesPerPixel;
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kinc_init((char *)title, width, height, &win, &frame);
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kinc_set_update_callback(update, NULL);
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}
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void hl_kinc_init_audio(vclosure *callCallback, vclosure *readSample, int *outSamplesPerSecond) {
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audioCallCallback = *((FN_AUDIO_CALL_CALLBACK *)(&callCallback->fun));
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audioReadSample = *((FN_AUDIO_READ_SAMPLE *)(&readSample->fun));
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kinc_a2_set_callback(mix);
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kinc_a2_init();
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*outSamplesPerSecond = kinc_a2_samples_per_second;
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}
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void hl_run_kore(void) {
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kinc_start();
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}
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vbyte *hl_kinc_file_contents(vbyte *name, int *size) {
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int len;
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int p = 0;
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vbyte *content;
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kinc_file_reader_t file;
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if (!kinc_file_reader_open(&file, (char *)name, KINC_FILE_TYPE_ASSET)) {
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return NULL;
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}
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hl_blocking(true);
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len = (int)kinc_file_reader_size(&file);
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if (size) {
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*size = len;
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}
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hl_blocking(false);
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content = (vbyte *)hl_gc_alloc_noptr(size ? len : len + 1);
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hl_blocking(true);
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if (!size) {
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content[len] = 0; // final 0 for UTF8
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}
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kinc_file_reader_read(&file, content, len);
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kinc_file_reader_close(&file);
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hl_blocking(false);
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return content;
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}
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#include <kinc/audio2/audio.h>
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#include <kinc/graphics4/graphics.h>
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#include <kinc/io/filereader.h>
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#include <kinc/log.h>
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#include <kinc/system.h>
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#include <kinc/window.h>
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#include <hl.h>
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void frame();
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static bool visible = true;
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static bool paused = false;
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typedef void (*FN_AUDIO_CALL_CALLBACK)(int);
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typedef float (*FN_AUDIO_READ_SAMPLE)(void);
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void (*audioCallCallback)(int);
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float (*audioReadSample)(void);
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static void update(void *data) {
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if (paused) {
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return;
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}
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kinc_a2_update();
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int windowCount = kinc_count_windows();
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for (int windowIndex = 0; windowIndex < windowCount; ++windowIndex) {
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if (visible) {
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kinc_g4_begin(windowIndex);
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frame();
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kinc_g4_end(windowIndex);
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}
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}
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if (!kinc_g4_swap_buffers()) {
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kinc_log(KINC_LOG_LEVEL_ERROR, "Graphics context lost.");
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}
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}
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static bool mixThreadregistered = false;
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static void mix(kinc_a2_buffer_t *buffer, uint32_t samples, void *userdata) {
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#ifdef KINC_MULTITHREADED_AUDIO
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if (!mixThreadregistered) {
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vdynamic *ret;
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hl_register_thread(&ret);
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mixThreadregistered = true;
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}
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hl_blocking(true);
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#endif
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audioCallCallback(samples);
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for (uint32_t i = 0; i < samples; i += 2) {
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float left_value = audioReadSample();
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float right_value = audioReadSample();
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*(float *)&buffer->channels[0][buffer->write_location] = left_value;
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*(float *)&buffer->channels[1][buffer->write_location] = right_value;
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buffer->write_location += 1;
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if (buffer->write_location >= buffer->data_size) {
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buffer->write_location = 0;
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}
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}
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#ifdef KINC_MULTITHREADED_AUDIO
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hl_blocking(false);
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#endif
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}
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void hl_init_kore(vbyte *title, int width, int height, int samplesPerPixel, bool vSync, int windowMode, int windowFeatures) {
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kinc_log(KINC_LOG_LEVEL_INFO, "Starting KincHL");
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kinc_window_options_t win;
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kinc_window_options_set_defaults(&win);
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win.title = (char *)title;
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win.width = width;
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win.height = height;
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win.x = -1;
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win.y = -1;
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win.mode = (kinc_window_mode_t)windowMode;
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win.window_features = windowFeatures;
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kinc_framebuffer_options_t frame;
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kinc_framebuffer_options_set_defaults(&frame);
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frame.vertical_sync = vSync;
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frame.samples_per_pixel = samplesPerPixel;
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kinc_init((char *)title, width, height, &win, &frame);
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kinc_set_update_callback(update, NULL);
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}
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void hl_kinc_init_audio(vclosure *callCallback, vclosure *readSample, int *outSamplesPerSecond) {
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audioCallCallback = *((FN_AUDIO_CALL_CALLBACK *)(&callCallback->fun));
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audioReadSample = *((FN_AUDIO_READ_SAMPLE *)(&readSample->fun));
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kinc_a2_set_callback(mix, NULL);
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kinc_a2_init();
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*outSamplesPerSecond = kinc_a2_samples_per_second();
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}
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void hl_run_kore(void) {
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kinc_start();
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}
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vbyte *hl_kinc_file_contents(vbyte *name, int *size) {
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int len;
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int p = 0;
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vbyte *content;
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kinc_file_reader_t file;
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if (!kinc_file_reader_open(&file, (char *)name, KINC_FILE_TYPE_ASSET)) {
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return NULL;
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}
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hl_blocking(true);
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len = (int)kinc_file_reader_size(&file);
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if (size) {
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*size = len;
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}
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hl_blocking(false);
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content = (vbyte *)hl_gc_alloc_noptr(size ? len : len + 1);
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hl_blocking(true);
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if (!size) {
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content[len] = 0; // final 0 for UTF8
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}
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kinc_file_reader_read(&file, content, len);
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kinc_file_reader_close(&file);
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hl_blocking(false);
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return content;
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}
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