SDL C++ Collision on multiple objects? - c++

So I was determined to get collision working myself from online resources without asking for help & I successfully followed a tutorial on lazyfoo to get collision working but quickly realised other problems.
So I started trying to get my collision working on my player (just a rect with controls atm) but couldn't actually access the rect inside the player class, I had to initialize it in main & use that for collision which meant transferring my collision function to main (not exactly perfect).
My question: So my collision is limited to two rects which I dedicated to the player & a single asteroid but my idea was to create multiple asteroids coming from the top of the screen, how would I go about altering the below code to accept a vector of "asteroids". Any advice about altering my code to be better object oriented etc is more then welcome but my main problem is collision. Please read collision carefully before posting, the specific X and Y params from the .cpp provides are hardcoded there.
Below Code order:
My current way of defining both player & asteroid for collision
Collision function
Asteroid.cpp & Player.cpp
My new way of loading asteroids - This is what I need collision to work with
Player aPlayer(200, 50, 50, 50);
Asteroid oneAsteroid(200, -50, 50, 50);
bool check_collision(SDL_Rect aPlayer, SDL_Rect oneAsteroid) {
//The sides of the rectangles
int leftA, leftB;
int rightA, rightB;
int topA, topB;
int bottomA, bottomB;
//Calculate the sides of rect A
leftA = aPlayer.X;
rightA = aPlayer.X + aPlayer.width;
topA = aPlayer.Y;
bottomA = aPlayer.Y + aPlayer.height;
//Calculate the sides of rect B
leftB = oneAsteroid.X;
rightB = oneAsteroid.X + oneAsteroid.width;
topB = oneAsteroid.Y;
bottomB = oneAsteroid.Y + oneAsteroid.height;
if (bottomA <= topB)
{
return false;
}
if (topA >= bottomB)
{
return false;
}
if (rightA <= leftB)
{
return false;
}
if (leftA >= rightB)
{
return false;
}
//If none of the sides from A are outside B
return true;
}
#include "asteroids.h"
Asteroid::Asteroid()
{
}
Asteroid::~Asteroid()
{
}
Asteroid::Asteroid(int x, int y, int w, int h)
{
X = x; Y = y; width = w; height = h;
//SDL_LogMessage(SDL_LOG_CATEGORY_APPLICATION, SDL_LOG_PRIORITY_INFO, "Square Constructed with Param(&p)", this);
}
void Asteroid::Render(SDL_Renderer * aRenderer)
{
printf("");
SDL_Rect* aAsteroid = new SDL_Rect();
aAsteroid->x = X; aAsteroid->y = Y; aAsteroid->w = width; aAsteroid->h = height;
SDL_SetRenderDrawColor(aRenderer, 0, 0, 0, 255);
SDL_RenderFillRect(aRenderer, aAsteroid);
}
void Asteroid::Init()
{
velocity.X = 0;
velocity.Y = 5;
}
void Asteroid::Update()
{
Y = Y + velocity.Y;
// printf("%d \n", Astero);
if (Y > 650) {
Y = -50;
}
}
#include "Player.h"
#include "asteroids.h"
using namespace std;
Player::Player()
{
}
Player::~Player()
{
SDL_LogMessage(SDL_LOG_CATEGORY_APPLICATION, SDL_LOG_PRIORITY_INFO, "Player Destroyed (&p)", this);
}
Player::Player(int x, int y, int w, int h)
{
X = x; Y = y; width = w; height = h;
//SDL_LogMessage(SDL_LOG_CATEGORY_APPLICATION, SDL_LOG_PRIORITY_INFO, "Square Constructed with Param(&p)", this);
}
void Player::Init()
{
velocity.X = 10;
velocity.Y = 10;
}
void Player::Update()
{
Y = Y + floorStart;
if (X < 0) {
X = 0;
}
if (KEY_RIGHT == true) {
X++;
}
if (X > SCREEN_WIDTH - 50) {
X = SCREEN_WIDTH - 50;
}
if (Y > SCREEN_HEIGHT - 100) {
Y = SCREEN_HEIGHT - 100;
}
if (KEY_LEFT == true) {
X--;
}
}
void Player::Input(SDL_Event event)
{
if (event.type == SDL_KEYDOWN && event.key.repeat == NULL)
{
if (event.key.keysym.sym == SDLK_LEFT) {
KEY_LEFT = true;
}
else {
KEY_LEFT = false;
}
if (event.key.keysym.sym == SDLK_RIGHT) {
KEY_RIGHT = true;
}
else {
KEY_RIGHT = false;
}
}
if (event.type == SDL_KEYUP && event.key.repeat == NULL) {
if (event.key.keysym.sym == SDLK_LEFT) {
KEY_LEFT = false;
}
if (event.key.keysym.sym == SDLK_RIGHT) {
KEY_RIGHT = false;
}
}
}
void Player::Render(SDL_Renderer * aRenderer)
{
SDL_Rect* thePlayer = new SDL_Rect;
thePlayer->x = X; thePlayer->y = Y; thePlayer->w = width; thePlayer->h = height;
SDL_SetRenderDrawColor(aRenderer, 0, 0, 0, 255);
SDL_RenderFillRect(aRenderer, thePlayer);
//SDL_LogMessage(SDL_LOG_CATEGORY_APPLICATION, SDL_LOG_PRIORITY_INFO, "Rendering (&p)", this);
}
What I need collision to work with, a vector of asteroids:
std::vector<Asteroid*> asteroidList;
asteroidList.push_back(new Asteroid(150, 350, 50, 50));
asteroidList.push_back(new Asteroid(70, 120, 125, 125));
The function to check collision in main.cpp
if (check_collision(aPlayer.thePlayer, oneAsteroid.aAsteroid)) {
printf("#######################");
}
And lastly, how would I go about rendering the array of asteroids?

Related

SDL2 C++ Snake Game Self Collision

As a school project, I've made the classic snake game using SDL2 and C++.
I've already implemented the growing, moving features for the Snake but it was required to make the movement based on a grid, but when I implemented the grid feature, the self-collision was always triggering whenever grow one part, so every time I start the game, and eat the first fruit, the snake dies.
I've been trying for a while now, from placing a delay to the adding of the tail and delaying the collision check, but to no avail, it's always colliding with itself even though it is not.
I can't see what is wrong with the self collision, I would gladly appreciate it if someone can point out what's wrong.
Snake.h
#include "GameObject.h"
#include "common.h"
#include "draw.h"
#include "Food.h"
#include "util.h"
#include <vector>
struct Segment {
int x;
int y;
Segment(int posx, int posy) {
x = posx;
y = posy;
}
};
class Snake :
public GameObject
{
public:
~Snake();
void start();
void update();
void draw();
void outOfBoundsCheck();
void move();
void addSegment(int x, int y);
void selfCollisionCheck(bool hasEaten);
void setHasMoved(bool a);
void setIsAlive(bool a);
int getX();
int getY();
int getWidth();
int getHeight();
bool getIsAlive();
bool getHasMoved();
std::vector<Segment*> const& getV() const;
private:
std::vector<Segment*> body;
SDL_Texture* headTexture;
SDL_Texture* bodyTexture;
int x;
int y;
int width;
int height;
int dx;
int dy;
int tempX;
int tempY;
bool isAlive;
bool hasMoved;
};
Snake.cpp
Snake::~Snake()
{
}
void Snake::start()
{
// Load Texture
headTexture = loadTexture("gfx/player.png");
bodyTexture = loadTexture("gfx/body.png");
tempX = 0;
tempY = 0;
x = 0;
y = 0;
dx = 0;
dy = 0;
isAlive = true;
hasMoved = false;
width = 0;
height = 0;
SDL_QueryTexture(headTexture, NULL, NULL, &width, &height);
addSegment(x, y);
}
void Snake::update()
{
std::cout << "Head" << body[0]->x << std::endl;
if (body.size() > 1) {
std::cout << "2nd Segment" << body[1]->x << std::endl;
if (body.size() > 2) {
std::cout << "3nd Segment" << body[2]->x << std::endl;
}
}
move();
outOfBoundsCheck();
}
void Snake::draw()
{
if (!isAlive) return; // Cancel the render if player dies
for (int i = 0; i < body.size(); i++) {
blit(headTexture, body[i]->x, body[i]->y);
}
}
void Snake::outOfBoundsCheck()
{
for (int i = 0; i < body.size(); i++) {
if (body[i]->x > SCREEN_WIDTH) {
body[i]->x = 0;
}
if (body[i]->x < 0) {
body[i]->x = SCREEN_WIDTH;
}
if (body[i]->y > SCREEN_HEIGHT) {
body[i]->y = 0;
}
if (body[i]->y < 0) {
body[i]->y = SCREEN_HEIGHT;
}
}
}
void Snake::move()
{
if (app.keyboard[SDL_SCANCODE_W] && dy != 5) {
dx = 0;
dy = -5;
}
if (app.keyboard[SDL_SCANCODE_A] && dx != 5) {
dx = -5;
dy = 0;
}
if (app.keyboard[SDL_SCANCODE_S] && dy != -5) {
dx = 0;
dy = 5;
}
if (app.keyboard[SDL_SCANCODE_D] && dx != -5) {
dx = 5;
dy = 0;
}
Segment* snakeHead = *(body.begin()); //Grid
tempX += dx;
tempY += dy;
if (tempX % 25 == 0) {
snakeHead->x += tempX;
tempX = 0;
}
if (tempY % 25 == 0) {
snakeHead->y += tempY;
tempY = 0;
}
for (int i = body.size() - 1; i > 0; i--) { //For the other parts to follow
body[i]->x = body[i - 1]->x;
body[i]->y = body[i - 1]->y;
}
}
void Snake::addSegment(int x, int y)
{
Segment* seg = new Segment(x, y );
body.push_back(seg);
}
void Snake::selfCollisionCheck(bool hasEaten) // Fail
{
Segment* head = body[0];
if (hasEaten == false) {
for (int i = 1; i < body.size(); i++) {
if (head->x == body[i]->x && head->y == body[i]->y) {
isAlive = false;
break;
}
}
}
else {
return;
}
}
void Snake::setHasMoved(bool a)
{
hasMoved = a;
}
void Snake::setIsAlive(bool a)
{
isAlive = a;
}
int Snake::getX()
{
return x;
}
int Snake::getY()
{
return y;
}
int Snake::getWidth()
{
return width;
}
int Snake::getHeight()
{
return height;
}
bool Snake::getIsAlive()
{
return isAlive;
}
bool Snake::getHasMoved()
{
return hasMoved;
}
std::vector<Segment*> const& Snake::getV() const
{
// TODO: insert return statement here
return body;
}
GameScene.h
#include "Scene.h"
#include "GameObject.h"
#include "Snake.h"
#include "Food.h"
#include "util.h"
#include "text.h"
#include "SoundManager.h"
class GameScene : public Scene
{
public:
GameScene();
~GameScene();
void start();
void draw();
void update();
void spawnFood();
void collisionLogic();
void selfCollision();
void despawnFood(Food* food);
private:
Snake* snake;
Food* food;
int points;
std::vector<Food*> spawnedFood;
};
GameScene.cpp
#include "GameScene.h"
GameScene::GameScene()
{
// Register and add game objects on constructor
snake = new Snake();
this->addGameObject(snake);
points = 0;
}
GameScene::~GameScene()
{
delete snake;
delete food;
}
void GameScene::start()
{
Scene::start();
// Initialize any scene logic here
initFonts();
spawnFood();
}
void GameScene::draw()
{
Scene::draw();
drawText(110, 20, 255, 255, 255, TEXT_CENTER, "POINTS: %03d", points);
if (snake->getIsAlive() == false) {
drawText(SCREEN_WIDTH / 2, SCREEN_HEIGHT / 2, 255, 255, 255, TEXT_CENTER, "GAME OVER!");
}
}
void GameScene::update()
{
Scene::update();
if (spawnedFood.size() == 0 && spawnedFood.size() != 1) {
spawnFood();
}
collisionLogic();
selfCollision();
}
void GameScene::spawnFood()
{
int random = rand() % 720;
if (random % 25 != 0) {
random = rand() % 720;
}
else {
Food* food = new Food();
this->addGameObject(food);
food->setPosition(rand() % SCREEN_WIDTH, rand() % SCREEN_HEIGHT);
spawnedFood.push_back(food);
}
}
void GameScene::collisionLogic()
{
Segment* head = snake->getV()[0];
std::vector<Segment*> snakeBody = snake->getV();
for (int i = 0; i < objects.size(); i++) {
Food* food = dynamic_cast<Food*>(objects[i]);
if (food != NULL) {
int collision = checkCollision(
head->x, head->y, snake->getWidth(), snake->getHeight(),
food->getX(), food->getY(), food->getWidth(), food->getHeight()
);
if (collision == 1) {
despawnFood(food);
snake->addSegment(snakeBody[snakeBody.size() - 1]->x, snakeBody[snakeBody.size() - 1]->y); //Adds a part to the snake
points++;
break;
}
}
}
}
void GameScene::selfCollision()
{
std::vector<Segment*> body = snake->getV();
Segment* head = snake->getV()[0];
for (int i = 1; i < snake->getV().size(); i++) {
if (head->x == body[i]->x && head->y == body[i]->y) {
snake->setIsAlive(false);
break;
}
}
}
void GameScene::despawnFood(Food* food)
{
int index = -1;
for (int i = 0; i < spawnedFood.size(); i++) {
if (food == spawnedFood[i]) {
index = i;
break;
}
}
if (index != -1) {
spawnedFood.erase(spawnedFood.begin() + index);
delete food;
}
}
It seems that I had some logical errors when it comes to the grid movement because when I re-coded everything and changed the grid movement into cell based instead of using modulo condition by dividing the screen width and height to the pixel size of my snake and using that as the coordinates for my movement, everything went back to normal and the collision bug disappeared.
Instead of doing this for the grid movement
Old Grid Movement Code
tempX += dx;
tempY += dy;
if (tempX % 25 == 0) {
snakeHead->x += tempX;
tempX = 0;
}
if (tempY % 25 == 0) {
snakeHead->y += tempY;
tempY = 0;
}
I defined this as a permanent value in my defs.h
defs.h
#define CELL_SIZE 25 // Size of the segment
#define CELL_WIDTH SCREEN_WIDTH / CELL_SIZE
#define CELL_HEIGHT SCREEN_HEIGHT / CELL_SIZE
After that, since I'm still going to render the picture with the default resolution, I multiplied CELL_SIZE to the dest variable of my blit function
draw.cpp
void blit(SDL_Texture* texture, int x, int y)
{
SDL_Rect dest;
dest.x = x * CELL_SIZE;
dest.y = y * CELL_SIZE;
SDL_QueryTexture(texture, NULL, NULL, &dest.w, &dest.h);
SDL_RenderCopy(app.renderer, texture, NULL, &dest);
}
This results to the snake and any other thing that I'm going to render to follow a grid and by assigning the x and y values with the CELL_WIDTH and CELL_HEIGHT as substitution to the resolution, I accomplished the grid movement with no conflict with my collision check.

Bug in Button class - Windows triggered a breakpoint SDL

I am a novice C++ programmer, and I have been experimenting with the SDL libraries for 2d graphics. I have been messing around with try to create some simple GUI controls; however, my button control is having a weird issue that I have been unable to resolve.
Whenever I launch the program in debug mode Visual Studio immediately gives me an error window saying
"Windows has triggered a breakpoint in Default_SDL_Setup.exe.
This may be due to a corruption of the heap, which indicates a bug in
Default_SDL_Setup.exe or any of the DLLs it has loaded.
This may also be due to the user pressing F12 while
Default_SDL_Setup.exe has focus.
The output window may have more diagnostic information."
and pops up a file called crtexe.c in the code editor window.
I have no idea what is wrong or what is going on.
Here is my button header:
#ifndef BUTTON_T
#define BUTTON_T
#include <vector>
#include <string>
#include "SDL.h"
#include "SDL_ttf.h"
#include "SDLFunctions.h"
#endif
class button
{
private:
//refreshes the button
void refresh_image();
bool refresh;
//surface to hold the created text
SDL_Surface *message;
//color of text
SDL_Color tC;
//the different box types
struct boxColor
{
unsigned int r;
unsigned int g;
unsigned int b;
};
boxColor boxes[4];
SDL_Rect rects[4];
//font of text
TTF_Font *f;
/*button's state
* States are:
* 0 - mouseout
* 1 - mouseover
* 2 - mousedown
* 3 - mouseup
*/
int state;
public:
//autosize based off of text?
bool autoSize;
//size of text
int textSize;
//x,y,w,and h for the box
int x, y, w, h;
//text of the label
std::string text;
button(int xpos, int ypos, int width, int height);
~button();
//handles all events for the button
void handleEvents(SDL_Event *event);
//sets text's font style off of a string location, color expects a 3 dimensional array
void setFont(std::string fontFileLocation);
void setFont(int color[3]);
void setFont(std::string fontFileLocation, int color[3]);
//gets the text color as a vector
std::vector<int> textColor();
//returns the color of the specified box
std::vector<int> boxColor(int boxnum);
//sets the color of the specified box, expects a 3 dimensional array
void setBoxColor(int boxnum, int color[3]);
void render(SDL_Surface *screen);
};
Here is the button code:
#include "button.h"
using namespace std;
void button::refresh_image()
{
if (refresh)
{
if (f != NULL)
{
message = TTF_RenderText_Solid(f, text.c_str(), tC);
if ((message != NULL) && autoSize)
{
if (message->w >= w)
{
w = (message->w + 10);
}
if (message->h >= h)
{
h = (message->h + 10);
}
}
}
for (int i = 0; i != 4; ++i)
{
rects[i].x = x;
rects[i].y = y;
rects[i].w = w;
rects[i].h = h;
}
refresh = false;
}
}
button::button(int xpos, int ypos, int width, int height)
{
string defaultFontLocation = DEFAULT_FONT;
//set pos
x = xpos;
y = ypos;
w = width;
h = height;
//set text stuff
text = "";
textSize = DEFAULT_FONT_SIZE;
tC.r = 0;
tC.g = 0;
tC.b = 0;
f = TTF_OpenFont(defaultFontLocation.c_str(), textSize);
message = NULL;
//create box types
state = 0;
for (int i = 0; i != 4; ++i)
{
boxes[i].r = 255;
boxes[i].g = 255;
boxes[i].b = 255;
rects[i].x = x;
rects[i].y = y;
rects[i].w = w;
rects[i].h = h;
}
autoSize = true;
refresh = true;
refresh_image();
}
button::~button()
{
if (f != NULL)
{
TTF_CloseFont(f);
}
if (message != NULL)
{
SDL_FreeSurface(message);
}
}
void button::setFont(string fontFileLocation)
{
if (f != NULL)
{
TTF_CloseFont(f);
}
f = TTF_OpenFont(fontFileLocation.c_str(), textSize);
refresh_image();
}
void button::setFont(int color[3])
{
tC.r = color[0];
tC.g = color[1];
tC.b = color[2];
refresh_image();
}
void button::setFont(string fontFileLocation, int color[3])
{
if (f != NULL)
{
TTF_CloseFont(f);
}
f = TTF_OpenFont(fontFileLocation.c_str(), textSize);
tC.r = color[0];
tC.g = color[1];
tC.b = color[2];
refresh_image();
}
vector<int> button::textColor()
{
vector<int> colors;
colors.resize(3);
colors[0] = tC.r;
colors[1] = tC.g;
colors[2] = tC.b;
return colors;
}
vector<int> button::boxColor(int boxnum)
{
vector<int> colors;
colors.resize(3);
if ((boxnum <= 3) && (boxnum >= 0))
{
colors[0] = boxes[boxnum].r;
colors[1] = boxes[boxnum].g;
colors[2] = boxes[boxnum].b;
} else {
colors[0] = -1;
colors[1] = -1;
colors[2] = -1;
}
return colors;
}
void button::setBoxColor(int boxnum, int color[3])
{
if ((boxnum <= 3) && (boxnum >= 0))
{
boxes[boxnum].r = color[0];
boxes[boxnum].g = color[1];
boxes[boxnum].b = color[2];
//refresh_image();
}
}
void button::render(SDL_Surface *screen)
{
refresh_image();
SDL_FillRect(screen, &rects[state], SDL_MapRGB(screen->format, static_cast<Uint8>(boxes[state].r), static_cast<Uint8>(boxes[state].g), static_cast<Uint8>(boxes[state].b)));
if (message != NULL)
{
apply_surface((((x + w) - message->w) / 2), (((y + h) - message->h) / 2), message, screen);
}
refresh = true;
}
void button::handleEvents(SDL_Event *event)
{
//the mouse offsets
int mx, my;
//if mouse moved
if (event->type == SDL_MOUSEMOTION)
{
//get the mouse offsets
mx = event->motion.x;
my = event->motion.y;
//if the mouse is over the button
if ((mx > x) && (mx < (x + w)) && (my > y) && (my < (y + h)))
{
//set the button sprite
state = 1;
} else {
//set the button sprite
state = 0;
}
}
//if a mouse button was pressed
if (event->type == SDL_MOUSEBUTTONDOWN)
{
//if it was the left mouse button
if (event->button.button == SDL_BUTTON_LEFT)
{
//get the mouse offsets
mx = event->motion.x;
my = event->motion.y;
//if the mouse is over the button
if ((mx > x) && (mx < (x + w)) && (my > y) && (my < (y + h)))
{
//set the button sprite
state = 2;
}
}
}
//if a mouse button was released
if (event->type == SDL_MOUSEBUTTONUP)
{
//if it was the left mouse button
if (event->button.button == SDL_BUTTON_LEFT)
{
//get the mouse offsets
mx = event->motion.x;
my = event->motion.y;
//if the mouse is over the button
if ((mx > x) && (mx < (x + w)) && (my > y) && (my < (y + h)))
{
//set the button sprite
state = 3;
}
}
}
}
and here is the code I have been calling to create the button in my main() function:
int color1[3] = {105,240,81};
int color2[3] = {230,188,62};
button testbutton(360, 130, 50, 30);
testbutton.text = "TEST";
testbutton.setBoxColor(1, color1);
testbutton.setBoxColor(2, color2);
delete[] &color1;
delete[] &color2;
The problem is most probably in these two lines:
delete[] &color1;
delete[] &color2;
color1 and color2are automatic variables, and calling delete on them invokes undefined behavior. You should only delete variables you previously allocated with new.

Array initialization effecting seemingly unrelated classes C++ SDL [closed]

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Questions asking for code must demonstrate a minimal understanding of the problem being solved. Include attempted solutions, why they didn't work, and the expected results. See also: Stack Overflow question checklist
Closed 9 years ago.
Improve this question
So I'm nearly done writing my first tic tac toe in C++ and SDL, ad I've run into a slight problem. I use a state machine to switch from title screen to shape choice screen, to player one or two to winning screen and back to the choice screen etc etc. On the choice screen I have two SDL_Rect arrays that act as buttons and the buttons are the X and O sprites I use from my sprite sheet. When the mouse hovers over them, they change colors. Everything is fine and dandy until the game resets to the choice screen after a win lose or tie. When it goes back to the choice screen and the mouse hovers over the button, it does not show the highlighted or mouse hovered sprite it clipped before. I pin pointed this problem to the initialization of my "set_grid_regions()" function. But this array doesn't even interact with the choice screen class in any way. How can this be affecting my hover sprites?
Just so anyone can see, here is the whole of the program:
#include "SDL.h"
#include "SDL_ttf.h"
#include "SDL_image.h"
#include "SDL_mixer.h"
#include <string>
#include <iostream>
//constants
const int SCREEN_HEIGHT = 300;
const int SCREEN_WIDTH = 300;
const int SCREEN_BPP = 32;
const int GRID_WIDTH = 96;
const int GRID_HEIGHT = 96;
//game states
enum States
{
S_NULL,
INTRO,
CHOICE,
START_O,
START_X,
PLAYER_ONE,
PLAYER_TWO,
O_win,
X_win,
Tie,
EXIT,
};
// CLASSES //
class GameState
{
public:
virtual void events() = 0;
virtual void logic() = 0;
virtual void render() = 0;
virtual ~GameState(){};
};
class intro : public GameState
{
private:
//hover variable
bool button_hover = NULL;
//rects and surfaces
SDL_Rect button;
SDL_Surface *title_message = NULL;
public:
void events();
void logic();
void render();
intro();
~intro();
};
class choice : public GameState
{
private:
bool O_hover = NULL;
bool X_hover = NULL;
SDL_Rect shape_O_button;
SDL_Rect shape_X_button;
SDL_Surface *choice_text = NULL;
public:
void events();
void logic();
void render();
choice();
~choice();
};
class playerOne : public GameState
{
public:
void events();
void logic();
void render();
playerOne();
~playerOne();
};
class playerTwo : public GameState
{
public:
void events();
void logic();
void render();
playerTwo();
~playerTwo();
};
class win : public GameState
{
private:
int winner = NULL;
SDL_Surface *Tie = NULL;
SDL_Surface *X_win = NULL;
SDL_Surface *O_win = NULL;
public:
void events();
void logic();
void render();
win(int winner);
~win();
};
class Exit : public GameState
{
public:
void events();
void logic();
void render();
Exit();
~Exit();
};
// GLOBALS //
GameState *currentState = NULL;
int stateID = S_NULL;
int nextState = S_NULL;
//event
SDL_Event event;
//surfaces
SDL_Surface *screen = NULL;
SDL_Surface *sprites = NULL;
//ttf
TTF_Font *font = NULL;
SDL_Color color = { 0, 0, 0 };
SDL_Color win_Color = { 0, 100, 0 };
//arrays
int grid_array[9];
//rects
SDL_Rect sprite_clip[10];
SDL_Rect grid_region[9];
int number_elements = sizeof(grid_region) / sizeof(grid_region[0]);
//bools
bool shape = NULL;
bool invalid = NULL;
bool winner = NULL;
//ints
int highlight = NULL;
int shape_winner = NULL;
// FUCNTIONS //
//load image
SDL_Surface *load_image(std::string filename)
{
//loaded image
SDL_Surface* loadedImage = NULL;
//optimized surface
SDL_Surface* optimizedImage = NULL;
//load image
loadedImage = IMG_Load(filename.c_str());
//if image loaded
if (loadedImage != NULL)
{
//Create optimized image
optimizedImage = SDL_DisplayFormat(loadedImage);
//free old image
SDL_FreeSurface(loadedImage);
//if optimized
if (optimizedImage != NULL)
{
//map color key
Uint32 colorkey = SDL_MapRGB(optimizedImage->format, 255, 255, 0);
//set all pixles of color 0,0,0 to be transparent
SDL_SetColorKey(optimizedImage, SDL_SRCCOLORKEY, colorkey);
}
}
return optimizedImage;
}
//apply image
void apply_surface(int x, int y, SDL_Surface* source, SDL_Surface* destination, SDL_Rect* clip = NULL)
{
//temp rect
SDL_Rect offset;
//offsets
offset.x = x;
offset.y = y;
//blit
SDL_BlitSurface(source, clip, destination, &offset);
}
//initiate SDL etc
bool init()
{
//initialize all SDL subsystems
if (SDL_Init(SDL_INIT_EVERYTHING) == -1)
{
return false;
}
//set up screen
screen = SDL_SetVideoMode(SCREEN_WIDTH, SCREEN_HEIGHT, SCREEN_BPP, SDL_SWSURFACE);
if (screen == NULL)
{
return false;
}
//check screen
if (screen == NULL)
{
return false;
}
//init TTF
if (TTF_Init() == -1)
{
return false;
}
//set window caption
SDL_WM_SetCaption("Tic-Tac-Toe", NULL);
//if evetything worked
return true;
}
//load files
bool load_files()
{
//sprite sheet
sprites = load_image("Sprites.png");
if (sprites == NULL)
{
return false;
}
font = TTF_OpenFont("font.ttf", 45);
if (font == NULL)
{
return false;
}
return true;
}
//quit
void clean_up()
{
//delete game state
delete currentState;
//free image
SDL_FreeSurface(sprites);
//quit ttf
TTF_CloseFont(font);
TTF_Quit();
//quit SDL
SDL_Quit();
}
void set_clip_regions()
{
//init clip array
//O
sprite_clip[0].x = 300;
sprite_clip[0].y = 0;
sprite_clip[0].w = 80;
sprite_clip[0].h = 82;
//X
sprite_clip[1].x = 300;
sprite_clip[1].y = 176;
sprite_clip[1].w = 80;
sprite_clip[1].h = 82;
//grid
sprite_clip[2].x = 0;
sprite_clip[2].y = 0;
sprite_clip[2].w = 300;
sprite_clip[2].h = 300;
//highlight
sprite_clip[3].x = 300;
sprite_clip[3].y = 82;
sprite_clip[3].w = 94;
sprite_clip[3].h = 94;
//left to right line
sprite_clip[4].x = 398;
sprite_clip[4].y = 188;
sprite_clip[4].w = 234;
sprite_clip[4].h = 12;
//diag up
sprite_clip[5].x = 393;
sprite_clip[5].y = 0;
sprite_clip[5].w = 188;
sprite_clip[5].h = 186;
//up down line
sprite_clip[6].x = 591;
sprite_clip[6].y = 0;
sprite_clip[6].w = 11;
sprite_clip[6].h = 208;
//Diag down line
sprite_clip[7].x = 0;
sprite_clip[7].y = 300;
sprite_clip[7].w = 188;
sprite_clip[7].h = 186;
//start button
sprite_clip[8].x = 202;
sprite_clip[8].y = 300;
sprite_clip[8].w = 94;
sprite_clip[8].h = 32;
//intro and choice background
sprite_clip[9].x = 300;
sprite_clip[9].y = 300;
sprite_clip[9].w = 300;
sprite_clip[9].h = 300;
//start hover
sprite_clip[10].x = 202;
sprite_clip[10].y = 332;
sprite_clip[10].w = 94;
sprite_clip[10].h = 32;
//X hover
sprite_clip[11].x = 202;
sprite_clip[11].y = 446;
sprite_clip[11].w = 80;
sprite_clip[11].h = 82;
//o hover
sprite_clip[12].x = 202;
sprite_clip[12].y = 364;
sprite_clip[12].w = 80;
sprite_clip[12].h = 82;
}
void set_grid_regions()
{
//set regions for images to be applied to
grid_region[0].x = 3;
grid_region[0].y = 3;
grid_region[1].x = 103;
grid_region[1].y = 3;
grid_region[2].x = 203;
grid_region[2].y = 3;
grid_region[3].x = 3;
grid_region[3].y = 103;
grid_region[4].x = 103;
grid_region[4].y = 103;
grid_region[5].x = 203;
grid_region[5].y = 103;
grid_region[6].x = 3;
grid_region[6].y = 203;
grid_region[7].x = 103;
grid_region[7].y = 203;
grid_region[8].x = 203;
grid_region[8].y = 203;
}
void init_grid()
{
//from left to right top to bottom
grid_array[0] = 0;
grid_array[1] = 0;
grid_array[2] = 0;
grid_array[3] = 0;
grid_array[4] = 0;
grid_array[5] = 0;
grid_array[6] = 0;
grid_array[7] = 0;
grid_array[8] = 0;
}
// STATE MACHINE FUNCTIONS //
void set_next_state(int newState)
{
if (nextState != EXIT)
{
nextState = newState;
}
}
void change_state()
{
if (nextState != S_NULL)
{
//change state
switch (nextState)
{
case CHOICE:
currentState = new choice();
break;
case PLAYER_ONE:
currentState = new playerOne();
break;
case PLAYER_TWO:
currentState = new playerTwo();
break;
case O_win:
currentState = new win(0);
break;
case X_win:
currentState = new win(1);
break;
case Tie:
currentState = new win(2);
break;
case EXIT:
currentState = new Exit();
break;
}
//change state
stateID = nextState;
//null nextState
nextState = S_NULL;
}
}
// CLASS DEFINITIONS //
intro::intro()
{
//button
button_hover = false;
//title
title_message = TTF_RenderText_Solid(font, "TIC TAC TOE", color);
//button bounds
button.x = 102;
button.y = 180;
button.w = 94;
button.h = 32;
}
intro::~intro()
{
SDL_FreeSurface(title_message);
}
void intro::events()
{
int x, y;
//mouse events
while (SDL_PollEvent(&event))
{
if (event.type == SDL_MOUSEMOTION)
{
x = event.motion.x;
y = event.motion.y;
if ((x > button.x) && (x < button.x + button.w) && (y > button.y) && (y < button.y + button.h))
{
button_hover = true;
}
else
{
button_hover = false;
}
}
if (event.type == SDL_MOUSEBUTTONDOWN)
{
if (event.button.button == SDL_BUTTON_LEFT)
{
x = event.motion.x;
y = event.motion.y;
if ((x > button.x) && (x < button.x + button.w) && (y > button.y) && (y < button.y + button.h))
{
set_next_state(CHOICE);
}
}
}
if (event.type == SDL_QUIT)
{
set_next_state(EXIT);
}
}
}
void intro::logic()
{
}
void intro::render()
{
apply_surface(0, 0, sprites, screen, &sprite_clip[9]);
apply_surface((SCREEN_WIDTH - title_message->w) / 2, 100, title_message, screen);
if (button_hover == true)
{
apply_surface(102, 180, sprites, screen, &sprite_clip[10]);
}
else
{
apply_surface(102, 180, sprites, screen, &sprite_clip[8]);
}
}
choice::choice()
{
O_hover = false;
X_hover = false;
shape_O_button.x = 0;
shape_O_button.y = 130;
shape_O_button.w = 80;
shape_O_button.h = 82;
shape_X_button.x = 220;
shape_X_button.y = 130;
shape_X_button.w = 80;
shape_X_button.h = 82;
font = TTF_OpenFont("font.ttf", 34);
choice_text = TTF_RenderText_Solid(font, "CHOOSE YOUR SHAPE", color);
}
choice::~choice()
{
SDL_FreeSurface(choice_text);
O_hover = NULL;
X_hover = NULL;
}
void choice::events()
{
int x, y;
//mouse events
while (SDL_PollEvent(&event))
{
if (event.type == SDL_MOUSEMOTION)
{
x = event.motion.x;
y = event.motion.y;
if ((x > shape_O_button.x) && (x < shape_O_button.x + shape_O_button.w) && (y > shape_O_button.y) && (y < shape_O_button.y + shape_O_button.h))
{
O_hover = true;
}
else
{
O_hover = false;
}
if ((x > shape_X_button.x) && (x < shape_X_button.x + shape_X_button.w) && (y > shape_X_button.y) && (y < shape_X_button.y + shape_X_button.h))
{
X_hover = true;
}
else
{
X_hover = false;
}
}
if (event.type == SDL_MOUSEBUTTONDOWN)
{
if (event.button.button == SDL_BUTTON_LEFT)
{
x = event.motion.x;
y = event.motion.y;
if ((x > shape_O_button.x) && (x < shape_O_button.x + shape_O_button.w) && (y > shape_O_button.y) && (y < shape_O_button.y + shape_O_button.h))
{
shape = false;
init_grid();
set_next_state(PLAYER_ONE);
}
if ((x > shape_X_button.x) && (x < shape_X_button.x + shape_X_button.w) && (y > shape_X_button.y) && (y < shape_X_button.y + shape_X_button.h))
{
shape = true;
init_grid();
set_next_state(PLAYER_TWO);
}
}
}
if (event.type == SDL_QUIT)
{
set_next_state(EXIT);
}
}
}
void choice::logic()
{
}
void choice::render()
{
apply_surface( 0, 0, sprites, screen, &sprite_clip[9]);
if (O_hover == false)
{
apply_surface(shape_O_button.x, shape_O_button.y, sprites, screen, &sprite_clip[0]);
}
else
{
apply_surface(shape_O_button.x, shape_O_button.y, sprites, screen, &sprite_clip[12]);
}
if (X_hover == false)
{
apply_surface(shape_X_button.x, shape_X_button.y, sprites, screen, &sprite_clip[1]);
}
else
{
apply_surface(shape_X_button.x, shape_X_button.y, sprites, screen, &sprite_clip[11]);
}
apply_surface((SCREEN_WIDTH - choice_text->w) / 2, 60, choice_text, screen);
}
//plyer O
playerOne::playerOne()
{
set_grid_regions();
}
playerOne::~playerOne()
{
}
void playerOne::events()
{
//mouse offsets
int x = 0, y = 0;
//if mouse moves
while (SDL_PollEvent(&event))
{
if (event.type == SDL_MOUSEMOTION)
{
//get the mouse co-ords
x = event.motion.x;
y = event.motion.y;
for (int grid = 0; grid < number_elements; grid++)
{
if ((x > grid_region[grid].x) && (x < grid_region[grid].x + GRID_WIDTH) && (y > grid_region[grid].y) && (y < grid_region[grid].y + GRID_HEIGHT))
{
//set highlight region
highlight = grid;
}
}
}
//when the player clicks on a grid_region
if (event.type == SDL_MOUSEBUTTONDOWN)
{
//mouse co-ordinates
x = event.motion.x;
y = event.motion.y;
if (event.button.button == SDL_BUTTON_LEFT)
{
//iterate
for (int grid = 0; grid < number_elements; grid++)
{
//if in region box
if ((x > grid_region[grid].x) && (x < grid_region[grid].x + GRID_WIDTH) && (y > grid_region[grid].y) && (y < grid_region[grid].y + GRID_HEIGHT))
{
//check region
//if O turn
if ((grid_array[grid] == 0) && (shape == 0))
{
//fill region
grid_array[grid] = 1;
shape = (!shape);
}
else if (grid_array[grid] != 0)
{
//raise "error"
invalid = true;
}
//if X turn
else if ((grid_array[grid] == 0) && (shape == 1))
{
if ((grid_array[grid] == 0))
{
//fill region
grid_array[grid] = 2;
shape = (!shape);
}
else if (grid_array[grid] != 0)
{
//raise "error"
invalid = true;
}
}
}
}
}
}
if (event.type == SDL_QUIT)
{
set_next_state(EXIT);
}
}
}
void playerOne::logic()
{
//check O win
for (int win = 0; win <= 6; win += 3)
{
if ((grid_array[win] == 1) && (grid_array[win + 1] == 1) && (grid_array[win + 2] == 1))
{
winner = 0;
set_next_state(O_win);
}
}
for (int win = 0; win < 3; win++)
{
if ((grid_array[win] == 1) && (grid_array[win + 3] == 1) && (grid_array[win + 6] == 1))
{
winner = 0;
set_next_state(O_win);
}
}
if ((grid_array[0] == 1) && (grid_array[4] == 1) && (grid_array[8] == 1))
{
winner = 0;
set_next_state(O_win);
}
if ((grid_array[2] == 1) && (grid_array[4] == 1) && (grid_array[6] == 1))
{
winner = 0;
set_next_state(O_win);
}
//check X's
for (int win = 0; win <= 6; win += 3)
{
if ((grid_array[win] == 2) && (grid_array[win + 1] == 2) && (grid_array[win + 2] == 2))
{
winner = 1;
set_next_state(X_win);
}
}
for (int win = 0; win < 3; win++)
{
if ((grid_array[win] == 2) && (grid_array[win + 3] == 2) && (grid_array[win + 6] == 2))
{
winner = 1;
set_next_state(X_win);
}
}
if ((grid_array[0] == 2) && (grid_array[4] == 2) && (grid_array[8] == 2))
{
winner = 1;
set_next_state(X_win);
}
if ((grid_array[2] == 2) && (grid_array[4] == 2) && (grid_array[6] == 2))
{
winner = 1;
set_next_state(X_win);
}
//check TIE
if ((grid_array[0] != 0) && (grid_array[1] != 0) && (grid_array[2] != 0) && (grid_array[3] != 0) && (grid_array[4] != 0) && (grid_array[5] != 0) && (grid_array[6] != 0) && (grid_array[7] != 0) && (grid_array[8] != 0) && (winner == NULL))
{
set_next_state(Tie);
}
}
void playerOne::render()
{
//logic
//rendering
//background
SDL_FillRect(screen, &screen->clip_rect, SDL_MapRGB(screen->format, 0xFF, 0xFF, 0xFF));
//grid
apply_surface(0, 0, sprites, screen, &sprite_clip[2]);
//highlight
if (highlight != -1)
{
apply_surface(grid_region[highlight].x, grid_region[highlight].y, sprites, screen, &sprite_clip[3]);
}
//APPLY PLAYER SHAPE
for (int grid = 0; grid < number_elements; grid++)
{
//O's
if ((grid_array[grid] == 1))
{
apply_surface(grid_region[grid].x + 7, grid_region[grid].y + 6, sprites, screen, &sprite_clip[0]);
}
else if ((grid_array[grid] == 2))
{
//X's
apply_surface(grid_region[grid].x + 7, grid_region[grid].y + 6, sprites, screen, &sprite_clip[1]);
}
}
}
playerTwo::playerTwo()
{
set_grid_regions();
}
playerTwo::~playerTwo()
{
}
void playerTwo::events()
{
//mouse offsets
int x = 0, y = 0;
//if mouse moves
while (SDL_PollEvent(&event))
{
if (event.type == SDL_MOUSEMOTION)
{
//get the mouse co-ords
x = event.motion.x;
y = event.motion.y;
for (int grid = 0; grid < number_elements; grid++)
{
if ((x > grid_region[grid].x) && (x < grid_region[grid].x + GRID_WIDTH) && (y > grid_region[grid].y) && (y < grid_region[grid].y + GRID_HEIGHT))
{
//set highlight region
highlight = grid;
}
}
}
//when the player clicks on a grid_region
if (event.type == SDL_MOUSEBUTTONDOWN)
{
//mouse co-ordinates
x = event.motion.x;
y = event.motion.y;
if (event.button.button == SDL_BUTTON_LEFT)
{
//iterate
for (int grid = 0; grid < number_elements; grid++)
{
//if in region box
if ((x > grid_region[grid].x) && (x < grid_region[grid].x + GRID_WIDTH) && (y > grid_region[grid].y) && (y < grid_region[grid].y + GRID_HEIGHT))
{
//check region
//if O turn
if ((grid_array[grid] == 0) && (shape == 0))
{
//fill region
grid_array[grid] = 1;
shape = (!shape);
}
else if (grid_array[grid] != 0)
{
//raise "error"
invalid = true;
}
//if X turn
else if ((grid_array[grid] == 0) && (shape == 1))
{
if ((grid_array[grid] == 0))
{
//fill region
grid_array[grid] = 2;
shape = (!shape);
}
else if (grid_array[grid] != 0)
{
//raise "error"
invalid = true;
}
}
}
}
}
}
if (event.type == SDL_QUIT)
{
set_next_state(EXIT);
}
}
}
void playerTwo::logic()
{
//check O win
for (int win = 0; win <= 6; win += 3)
{
if ((grid_array[win] == 1) && (grid_array[win + 1] == 1) && (grid_array[win + 2] == 1))
{
winner = 0;
set_next_state(O_win);
}
}
for (int win = 0; win < 3; win++)
{
if ((grid_array[win] == 1) && (grid_array[win + 3] == 1) && (grid_array[win + 6] == 1))
{
winner = 0;
set_next_state(O_win);
}
}
if ((grid_array[0] == 1) && (grid_array[4] == 1) && (grid_array[8] == 1))
{
winner = 0;
set_next_state(O_win);
}
if ((grid_array[2] == 1) && (grid_array[4] == 1) && (grid_array[6] == 1))
{
winner = 0;
set_next_state(O_win);
}
//check X's
for (int win = 0; win <= 6; win += 3)
{
if ((grid_array[win] == 2) && (grid_array[win + 1] == 2) && (grid_array[win + 2] == 2))
{
winner = 1;
set_next_state(X_win);
}
}
for (int win = 0; win < 3; win++)
{
if ((grid_array[win] == 2) && (grid_array[win + 3] == 2) && (grid_array[win + 6] == 2))
{
winner = 1;
set_next_state(X_win);
}
}
if ((grid_array[0] == 2) && (grid_array[4] == 2) && (grid_array[8] == 2))
{
winner = 1;
set_next_state(X_win);
}
if ((grid_array[2] == 2) && (grid_array[4] == 2) && (grid_array[6] == 2))
{
winner = 1;
set_next_state(X_win);
}
//check TIE
if ((grid_array[0] != 0) && (grid_array[1] != 0) && (grid_array[2] != 0) && (grid_array[3] != 0) && (grid_array[4] != 0) && (grid_array[5] != 0) && (grid_array[6] != 0) && (grid_array[7] != 0) && (grid_array[8] != 0) && (winner == NULL))
{
set_next_state(Tie);
}
}
void playerTwo::render()
{
//logic
//rendering
//background
SDL_FillRect(screen, &screen->clip_rect, SDL_MapRGB(screen->format, 0xFF, 0xFF, 0xFF));
//grid
apply_surface(0, 0, sprites, screen, &sprite_clip[2]);
//highlight
if (highlight != -1)
{
apply_surface(grid_region[highlight].x, grid_region[highlight].y, sprites, screen, &sprite_clip[3]);
}
//APPLY PLAYER SHAPE
for (int grid = 0; grid < number_elements; grid++)
{
//O's
if ((grid_array[grid] == 1))
{
apply_surface(grid_region[grid].x + 7, grid_region[grid].y + 6, sprites, screen, &sprite_clip[0]);
}
else if ((grid_array[grid] == 2))
{
//X's
apply_surface(grid_region[grid].x + 7, grid_region[grid].y + 6, sprites, screen, &sprite_clip[1]);
}
}
}
win::win(int winner)
{
shape_winner = winner;
font = TTF_OpenFont("font.ttf", 45);
X_win = TTF_RenderText_Solid(font, "X WINS", win_Color);
O_win = TTF_RenderText_Solid(font, "O wins", win_Color);
Tie = TTF_RenderText_Solid(font, "Tie", win_Color);
}
win::~win()
{
TTF_CloseFont(font);
SDL_FreeSurface(X_win);
SDL_FreeSurface(O_win);
}
void win::events()
{
while (SDL_PollEvent(&event))
{
if (event.type == SDL_QUIT)
{
set_next_state(EXIT);
}
}
}
void win::logic()
{
if (shape_winner == 3)
{
SDL_Delay(2000);
set_next_state(CHOICE);
winner = NULL;
}
}
void win::render()
{
//background
SDL_FillRect(screen, &screen->clip_rect, SDL_MapRGB(screen->format, 0xFF, 0xFF, 0xFF));
//grid
apply_surface(0, 0, sprites, screen, &sprite_clip[2]);
//highlight
if (highlight != -1)
{
apply_surface(grid_region[highlight].x, grid_region[highlight].y, sprites, screen, &sprite_clip[3]);
}
//APPLY PLAYER SHAPE
for (int grid = 0; grid < number_elements; grid++)
{
//O's
if ((grid_array[grid] == 1))
{
apply_surface(grid_region[grid].x + 7, grid_region[grid].y + 6, sprites, screen, &sprite_clip[0]);
}
else if ((grid_array[grid] == 2))
{
//X's
apply_surface(grid_region[grid].x + 7, grid_region[grid].y + 6, sprites, screen, &sprite_clip[1]);
}
}
if (shape_winner == 1)
{
apply_surface((SCREEN_WIDTH - X_win->w) / 2, (SCREEN_HEIGHT - X_win->h) / 2, X_win, screen);
//enable delay and reset
shape_winner = 3;
}
if (shape_winner == 0)
{
apply_surface((SCREEN_WIDTH - O_win->w) / 2, (SCREEN_HEIGHT - O_win->h) / 2, O_win, screen);
//enable delay and reset
shape_winner = 3;
}
if (shape_winner == 2)
{
apply_surface((SCREEN_WIDTH - Tie->w) / 2, (SCREEN_HEIGHT - Tie->h) / 2, Tie, screen);
//enable delay and reset
shape_winner = 3;
}
}
Exit::Exit()
{
}
Exit::~Exit()
{
}
void Exit::events()
{
}
void Exit::logic()
{
}
void Exit::render()
{
}
//MAAAAAAAAAAAAAAAAAAIN//
int main(int argc, char* args[])
{
//init SDL
init();
//load files
load_files();
//set clips
set_clip_regions();
//set state
stateID = INTRO;
//set game object
currentState = new intro();
while (stateID != EXIT)
{
//handle state events
currentState->events();
// do state logic
currentState->logic();
//change state if needed
change_state();
//render state
currentState->render();
if (SDL_Flip(screen) == -1)
{
return 1;
}
}
clean_up();
return 0;
}
It's pretty strange. But I'm 99% sure that it's the "set_grid_regions()" that is effecting the rendering inside the choice::render() or choice::event() class fucntions. Can anyone help with this?
The error causing the clipping problem is an incorrect declaration for sprite_clip. You've declared it as sprite_clip[10], but you have 13 sprites. Change this to sprite_clip[13].
Other things I noticed:
You allocate all these state objects with new, but you never delete them. You need to delete them when you change states. Otherwise you will leak memory.
The font font.ttf seems to be a global resource but is haphazardly managed by a mixture of global and local methods. Load it once in load_files() and release it once in clean_up().
While your project may be complete, you might tinker around with it and work on improving the implementation now that you have something working. (If this was a homework, keep a copy of a working version to hand in. ;-) )
Consider packaging all of your global state (your fonts, sprites, clipping arrays, etc.) into a single class for the game. Your init_xxx and load_xxx functions move to its constructor. Your clean_up moves to its destructor.
Consider converting your dynamic state objects into statically allocated state objects. They could even be members of the same global state class I mentioned in the previous bullet. Now you've encapsulated the whole game in one class.
Consider merging playerOne and playerTwo into a single class. Distinguish them at construction time, just as you did with win(0), win(1), win(2).

C++, SDL, function doesnt seem to change main surface after first launch

Here is the code of draw()
My problem is that it draws things only once, then it draws the same.
I am using SLD_Flip(surface) after it.
sqrbmp, applebmp, blank are surfaces with BMP loaded
des is a rectangle
screen is main surface
It is supposed to draw a game map.
Where is my bad?
// includes, defines etc.
const int mapx = 32; // 640 / 20(bmp size)
const int mapy = 24; // 480 / 20
//nothing important
SDL_Event keys;
SDL_Surface * screen = NULL;
SDL_Surface * blank = NULL;
SDL_Surface * sqrbmp = NULL;
SDL_Surface * applebmp = NULL;
SDL_Rect des;
int map[mapy][mapx];
// nothing important
// nothing important
struct square
{
square(int xt, int yt, int dirt);
int x;
int y;
int dir;
};
std::vector <square> snake;
square::square(int xt, int yt, int dirt)
{
x = xt;
y = yt;
dir = dirt;
snake.push_back(*this);
}
bool squareontile(int x, int y)
{
// returns true if there is square on that tile
}
void draw()
{
for(int yt = 0 ; yt < mapy; yt++)
{
for(int xt = 0 ; xt < mapx; xt++)
{
des.y = yt * 20;
des.x = xt * 20;
if(squareontile(xt,yt) == 1)
{
SDL_BlitSurface(sqrbmp, NULL, screen, &des);
}
else
{
switch(map[yt][xt])
{
case 5:
SDL_BlitSurface(applebmp, NULL, screen, &des);
break;
default:
SDL_BlitSurface(blank, NULL, screen, &des);
break;
}
}
}
}
}
// nothing important
void checkmap()
{
for(int yt = 0 ; yt < mapy; yt++)
{
for(int xt = 0 ; xt < mapx; xt++)
{
if(squareontile(xt,yt) == 0 && map[yt][xt] != 5)
{
map[yt][xt] = 0;
}
}
}
}
bool checksnake()
{
for(int a = 0; a < snake.size() ; a++)
{
for(int b = 0; b < snake.size() ; b++)
{
if(snake[a].y == snake[b].y && snake[a].x == snake[b].x && a != b)
{
return true;
}
}
}
}
// nothing important
void apple()
{
if(!appleisonmap())
{
int y;
int x;
do
{
y = rand() % mapy;
x = rand() % mapx;
} while(squareontile(x,y));
map[y][x] = 5;
}
}
// nothing important
int main( int argc, char * args[] )
{
// nothing important
SDL_Init( SDL_INIT_EVERYTHING );
screen = SDL_SetVideoMode( 640, 480, 24, SDL_SWSURFACE );
applebmp = SDL_LoadBMP("apple.bmp"); // 20x20
blank = SDL_LoadBMP("blank.bmp"); // 20x20
sqrbmp = SDL_LoadBMP( "sqr.bmp" ); // 20x20
for(int b = 7 ; b > 0 ; b--)
{
square(5,b,1);
}
while(!exitv && !game_over)
{
draw();
game_over = checksnake();
SDL_Flip( screen );
SDL_Delay(100);
while( SDL_PollEvent( & keys ) )
{
if( keys.type == SDL_QUIT )
{
exitv = true;
}
// detecting other keys, input for moving, ya know
}
checkmap();
apple();
checksquare();
}
SDL_FreeSurface( sqrbmp );
SDL_FreeSurface( applebmp );
SDL_FreeSurface( blank );
SDL_Quit();
return 0;
}
Ahh found the error. I just forgot 1 function and the snake wasnt moving.

SFML sprite std::list

I have some SFML 2.0 code, where I draw a robot which moves in a grid. Grid is drawn using OpenGL, the robot image is loaded using sf::Texture. I have some code that makes walls on user left mouse click (no collision detection). I made a function which erases them on right click.
Walls are stored in sf::Sprite, then put into std::list and drawn in a loop. When I call list.erase() program segfaults. Debugger shows some problem in sf::transformable = operator.
How to fix that.
Here is the code:
#include <SFML/Graphics.hpp>
#include <SFML/OpenGL.hpp>
#include <iostream>
#include <list>
using namespace std;
static const size_t WIN_HEIGHT=800, WIN_WIDTH=800;
void drawGrid();
void fixCoords(int & x, int & y);
static list<sf::Sprite> walls;
int main()
{
// Create the main window
sf::RenderWindow window(sf::VideoMode(WIN_WIDTH, WIN_HEIGHT), "SFML window");
/*** Robot code ***/
sf::Image robotImg;
robotImg.loadFromFile("robot.png");
robotImg.createMaskFromColor(sf::Color(89, 167, 45));
sf::Texture robotTexture;
robotTexture.loadFromImage(robotImg);
sf::Sprite robotSpr(robotTexture);
sf::Sprite t;
robotSpr.setPosition(sf::Vector2f(400, 405));
/***** Wall code ****/
int x = 0, y = 0;
sf::Image wallimg;
wallimg.loadFromFile("wall.png");
wallimg.createMaskFromColor(sf::Color(255, 0, 255));
sf::Texture walltex;
walltex.loadFromImage(wallimg);
sf::Sprite wall;
wall.setTexture(walltex);
int movex = 0, movey = 0;
gluOrtho2D(0, WIN_WIDTH, 0, WIN_HEIGHT);
while (window.isOpen())
{
// Process events
sf::Event event;
while (window.pollEvent(event))
{
// Close window : exit
if (event.type == sf::Event::Closed)
{
window.close();
return 0;
}
if (event.type == sf::Event::MouseButtonPressed )
{
if(event.mouseButton.button == sf::Mouse::Left)
{
x = event.mouseButton.x;
y = event.mouseButton.y;
fixCoords(x, y);
wall.setPosition(sf::Vector2f(x, y));
walls.push_back(wall);
}
if(event.mouseButton.button == sf::Mouse::Right)
{
x = event.mouseButton.x;
y = event.mouseButton.y;
fixCoords(x, y);
for(list<sf::Sprite>::iterator it = walls.begin(); it != walls.end(); it++)
{
if((it->getPosition().x == x) && (it->getPosition().y == y)) // This line
walls.erase(it);
}
}
}
if(event.type == sf::Event::KeyPressed)
{
if((movex == 0) && (movey == 0))
{
if(event.key.code == sf::Keyboard::Up)
movey -= 37;
if(event.key.code == sf::Keyboard::Down)
movey += 37;
if(event.key.code == sf::Keyboard::Left)
movex -= 40;
if(event.key.code == sf::Keyboard::Right)
movex += 40;
}
}
}
window.pushGLStates();
window.clear(sf::Color(90, 167, 45));
// Insert SFML Draws here
if(movex > 0)
{
robotSpr.move(1, 0);
movex--;
}
if(movex < 0)
{
robotSpr.move(-1, 0);
movex++;
}
if(movey > 0)
{
robotSpr.move(0, 1);
movey--;
}
if(movey < 0)
{
robotSpr.move(0, -1);
movey++;
}
window.draw(robotSpr);
if((x != 0) && (y != 0))
{
for(list<sf::Sprite>::iterator it = walls.begin(); it != walls.end(); it++)
window.draw(*it);
}
window.popGLStates();
// OpenGL Here
drawGrid();
// Update the window
window.display();
}
}
void drawGrid()
{
glColor3ub(0, 0, 0);
glBegin(GL_LINES); // Horizontal lines
for(int i = 0; i < WIN_HEIGHT; i += WIN_HEIGHT / 20)
{
glVertex2i(0, i);
glVertex2i(WIN_WIDTH, i);
}
glEnd();
glColor3ub(0, 0, 0);
glBegin(GL_LINES); // Vertical lines
for(int i = 0; i < WIN_WIDTH; i += WIN_WIDTH / 20)
{
glVertex2i(i, 0);
glVertex2i(i, WIN_HEIGHT);
}
glEnd();
}
void fixCoords(int &x, int &y)
{
/**** Find the nearest x sqare ****/
for(int i = 1; i < WIN_WIDTH - 1; i += 40)
{
if((x >= i) && x <= (i + 40))
{
x = i - 1;
break;
}
}
for(int i = WIN_HEIGHT; i > 0; i -= 40)
{
if((y >= i) && y <= (i + 40))
{
y = i;
break;
}
}
}
This is an annoyance of the way the list<T> container works.
A list<T> container is implemented as a doubly linked list. So an iterator needs to access its current element to get to the next element. If you have just erased its current element, everything explodes.
You can make it work like this:
list<sf::Sprite>::iterator it=walls.begin(),next;
while(it!=walls.end()) {
next = it; next++;
if((it->getPosition().x == x) && (it->getPosition().y == y))
walls.erase(it);
it = next;
}
you could also use remove_if with an appropriate predicate class, but that would just be uglier and more convoluted.