392 lines
9.6 KiB
C++
392 lines
9.6 KiB
C++
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#include "parameters.h"
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#include <azur/azur.h>
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#include "AzurShaders.h"
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#include <azur/gint/render.h>
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#include <gint/drivers/r61524.h>
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#include <gint/rtc.h>
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#include <gint/clock.h>
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#include <gint/kmalloc.h>
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#if !(CALCEMU)
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#include <gint/usb-ff-bulk.h>
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#include <gint/usb.h>
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#endif
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#include <libprof.h>
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#include <cstdint>
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#include <fxlibc/printf.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <num/num.h>
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#include "extrakeyboard.h"
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#include "utilities.h"
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#include "level.h"
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#include "player.h"
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#include "vector2D.h"
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#include <vector>
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bool screenshot = false;
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bool record = false;
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bool textoutput = false;
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bool exitToOS = false;
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uint8_t texttodraw = 1;
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bool textbacktile = false;
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bool textforetile = false;
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#define SCALE_PIXEL 1
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#define X_RESOL (DWIDTH / SCALE_PIXEL)
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#define Y_RESOL (DHEIGHT / SCALE_PIXEL)
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float elapsedTime = 0.0f;
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uint32_t time_update = 0, time_render = 0;
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prof_t perf_update, perf_render;
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static kmalloc_arena_t extended_ram = {0};
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static kmalloc_arena_t *_uram;
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kmalloc_gint_stats_t *_uram_stats;
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kmalloc_gint_stats_t *extram_stats;
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KeyboardExtra MyKeyboard;
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Level MyLevel;
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Player MyPlayer(198, 180);
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std::vector<Border *> MyLevelBorders;
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bool drawbackground = true;
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bool drawforeground = true;
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bool drawnormals = true;
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bool drawborders = true;
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uint16_t tilecolor = C_BLACK;
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uint16_t backcolor = C_WHITE;
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static void hook_prefrag(int id, void *fragment, int size) {
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if (!screenshot && !record)
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return;
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#if !(CALCEMU)
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/* Screenshot takes precedence */
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char const *type = screenshot ? "image" : "video";
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int pipe = usb_ff_bulk_output();
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if (id == 0) {
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usb_fxlink_header_t h;
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usb_fxlink_image_t sh;
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int size = azrp_width * azrp_height * 2;
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usb_fxlink_fill_header(&h, "fxlink", type, size + sizeof sh);
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sh.width = htole32(azrp_width);
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sh.height = htole32(azrp_height);
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sh.pixel_format = htole32(USB_FXLINK_IMAGE_RGB565);
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usb_write_sync(pipe, &h, sizeof h, false);
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usb_write_sync(pipe, &sh, sizeof sh, false);
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}
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usb_write_sync(pipe, fragment, size, false);
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if (id == azrp_frag_count - 1) {
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usb_commit_sync(pipe);
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screenshot = false;
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}
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#endif
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}
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static void update(float dt) {
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MyPlayer.Update(dt);
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MyLevel.Update(dt);
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}
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static void render(void) {
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MyLevel.Render();
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// MyLevel.RenderSelected();
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// MyPlayer.Render();
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#if (BIAS)
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if (texttodraw >= 1)
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azrp_draw_text(1, 01, "FPS = %.0f - Mem Free = %d",
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(float)(1000.0f / elapsedTime),
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_uram_stats->free_memory + extram_stats->free_memory);
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if (texttodraw >= 1)
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azrp_draw_text(1, 11, "PlayX = %d - PlayY = %d - VX = %d - VY = %d",
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MyPlayer.tileX, MyPlayer.tileY,
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MyPlayer.nextx.v - MyPlayer.currx.v,
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MyPlayer.nexty.v - MyPlayer.curry.v);
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if (texttodraw >= 2)
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azrp_draw_text(1, 31, "Update = %.3f ms", (float)time_update / 1000.0f);
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if (texttodraw >= 2)
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azrp_draw_text(1, 41, "Render = %.3f ms", (float)time_render / 1000.0f);
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if (texttodraw >= 2)
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azrp_draw_text(1, 51, ">Total = %.0f ms", (float)elapsedTime);
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if (texttodraw >= 3)
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azrp_draw_text(1, 81, "Mem Used : %d",
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_uram_stats->used_memory + extram_stats->used_memory);
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if (texttodraw >= 3)
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azrp_draw_text(1, 91, "Mem Free : %d",
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_uram_stats->free_memory + extram_stats->free_memory);
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if (texttodraw >= 3)
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azrp_draw_text(1, 101, "Mem Peak Used : %d",
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_uram_stats->peak_used_memory +
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extram_stats->peak_used_memory);
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#endif
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}
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static void get_inputs(float dt) {
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if (MyKeyboard.IsKeyPressed(MYKEY_SHIFT) &&
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MyKeyboard.IsKeyHoldPressed(MYKEY_EXIT)) {
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exitToOS = true;
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};
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#if (DEBUG_MODE)
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#if !(CALCEMU)
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_7) && usb_is_open()) {
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screenshot = true;
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};
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_8) && usb_is_open()) {
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record = true;
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};
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_9) && usb_is_open()) {
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record = false;
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};
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#endif
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_VARS)) {
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drawbackground = !drawbackground;
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}
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_MENU)) {
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drawforeground = !drawforeground;
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}
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if (MyKeyboard.IsKeyPressed(MYKEY_SHIFT) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_VARS)) {
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drawnormals = !drawnormals;
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}
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if (MyKeyboard.IsKeyPressed(MYKEY_SHIFT) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_MENU)) {
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drawborders = !drawborders;
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}
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_0)) {
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texttodraw = 0;
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}
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_1)) {
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texttodraw = 1;
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}
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_2)) {
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texttodraw = 2;
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}
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_3)) {
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texttodraw = 3;
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}
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_4)) {
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textbacktile = !textbacktile;
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}
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if (MyKeyboard.IsKeyPressed(MYKEY_OPTN) &&
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MyKeyboard.IsKeyPressedEvent(MYKEY_5)) {
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textforetile = !textforetile;
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}
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if (MyKeyboard.IsKeyPressedEvent(MYKEY_F1)) {
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MyLevel.ChangeMap(0);
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}
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if (MyKeyboard.IsKeyPressedEvent(MYKEY_F2)) {
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MyLevel.ChangeMap(1);
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}
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if (MyKeyboard.IsKeyPressedEvent(MYKEY_F3)) {
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MyLevel.ChangeMap(2);
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}
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if (MyKeyboard.IsKeyPressedEvent(MYKEY_F4)) {
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MyLevel.ChangeMap(3);
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}
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if (MyKeyboard.IsKeyPressedEvent(MYKEY_F5)) {
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MyLevel.ChangeMap(4);
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}
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if (MyKeyboard.IsKeyPressedEvent(MYKEY_F6)) {
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MyLevel.ChangeMap(5);
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}
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#endif
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/* we can have either LEFT or RIGHT or NONE OF THEM pressed for the direction
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*/
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if (MyKeyboard.IsKeyPressed(MYKEY_LEFT))
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MyPlayer.Left(dt);
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else if (MyKeyboard.IsKeyPressed(MYKEY_RIGHT))
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MyPlayer.Right(dt);
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else if (MyKeyboard.IsKeyPressed(MYKEY_UP))
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MyPlayer.Up(dt);
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else if (MyKeyboard.IsKeyPressed(MYKEY_DOWN))
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MyPlayer.Down(dt);
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else
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MyPlayer.Nothing(dt);
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/* JUMP is */
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if (MyKeyboard.IsKeyPressedEvent(MYKEY_SHIFT)) {
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// MyPlayer.Jump( dt );
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}
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}
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bool AddMoreRAM(void) {
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/* allow more RAM */
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char const *osv = (char *)0x80020020;
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if ((!strncmp(osv, "03.", 3) && osv[3] <= '8') &&
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gint[HWCALC] == HWCALC_FXCG50) // CG-50
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{
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extended_ram.name = "extram";
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extended_ram.is_default = true;
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extended_ram.start = (void *)0x8c200000;
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extended_ram.end = (void *)0x8c4e0000;
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kmalloc_init_arena(&extended_ram, true);
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kmalloc_add_arena(&extended_ram);
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return true;
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} else if (gint[HWCALC] == HWCALC_PRIZM) // CG-10/20
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{
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extended_ram.name = "extram";
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extended_ram.is_default = true;
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uint16_t *vram1, *vram2;
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dgetvram(&vram1, &vram2);
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dsetvram(vram1, vram1);
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extended_ram.start = vram2;
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extended_ram.end = (char *)vram2 + 396 * 224 * 2;
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kmalloc_init_arena(&extended_ram, true);
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kmalloc_add_arena(&extended_ram);
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return false;
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} else if (gint[HWCALC] == HWCALC_FXCG_MANAGER) // CG-50 EMULATOR
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{
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extended_ram.name = "extram";
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extended_ram.is_default = true;
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extended_ram.start = (void *)0x88200000;
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extended_ram.end = (void *)0x884e0000;
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kmalloc_init_arena(&extended_ram, true);
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kmalloc_add_arena(&extended_ram);
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return true;
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} else {
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return false;
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}
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}
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void FreeMoreRAM(void) {
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memset(extended_ram.start, 0,
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(char *)extended_ram.end - (char *)extended_ram.start);
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}
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int main(void) {
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exitToOS = false;
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_uram = kmalloc_get_arena("_uram");
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bool canWeAllocate3Mb = AddMoreRAM();
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__printf_enable_fp();
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__printf_enable_fixed();
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azrp_config_scale(SCALE_PIXEL);
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azrp_hook_set_prefrag(hook_prefrag);
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#if !(CALCEMU)
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usb_interface_t const *interfaces[] = {&usb_ff_bulk, NULL};
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usb_open(interfaces, GINT_CALL_NULL);
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#endif
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// MyLevel.ChangeMap(2, &MyPlayer);
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prof_init();
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int pointX[4] = { 50, 100, 150, 100 };
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int pointY[4] = { 80, 20, 100, 170 };
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do {
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perf_update = prof_make();
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prof_enter(perf_update);
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{
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// all the stuff to be update should be put here
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MyKeyboard.Update(elapsedTime);
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get_inputs(elapsedTime);
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update(elapsedTime);
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// update the RAM consumption status
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_uram_stats = kmalloc_get_gint_stats(_uram);
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extram_stats = kmalloc_get_gint_stats(&extended_ram);
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}
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prof_leave(perf_update);
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time_update = prof_time(perf_update);
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perf_render = prof_make();
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prof_enter(perf_render);
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{
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// all the stuff to be rendered should be put here
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azrp_clear(backcolor);
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render();
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azrp_filledcircle((int)MyPlayer.currx, (int)MyPlayer.curry, 8, C_RED);
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azrp_line((int)MyPlayer.currx - 3, (int)MyPlayer.curry,
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(int)MyPlayer.currx + 3, (int)MyPlayer.curry, C_GREEN);
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azrp_line((int)MyPlayer.currx, (int)MyPlayer.curry - 3,
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(int)MyPlayer.currx, (int)MyPlayer.curry + 3, C_GREEN);
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azrp_line((int)MyPlayer.nextx - 3, (int)MyPlayer.nexty,
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(int)MyPlayer.nextx + 3, (int)MyPlayer.nexty, C_BLUE);
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azrp_line((int)MyPlayer.nextx, (int)MyPlayer.nexty - 3,
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(int)MyPlayer.nextx, (int)MyPlayer.nexty + 3, C_BLUE);
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azrp_update();
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}
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prof_leave(perf_render);
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time_render = prof_time(perf_render);
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elapsedTime = ((float)(time_update + time_render)) / 1000.0f;
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} while (exitToOS == false);
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prof_quit();
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#if !(CALCEMU)
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usb_close();
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#endif
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FreeMoreRAM();
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return 1;
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}
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