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2
.gitignore
vendored
2
.gitignore
vendored
@@ -1 +1 @@
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./src/tetris-clone
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tetris-clone
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12
src/app.c
12
src/app.c
@@ -1,10 +1,10 @@
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#include <stdio.h>
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#include "raylib.h"
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#include "app.h"
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#include "manager.h"
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#include "raylib.h"
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#include "renderer.h"
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#include "tetromino.h"
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#include "app.h"
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#define TARGET_FPS 60
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@@ -29,7 +29,8 @@ void _a_initialize_raylib(void) {
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void _a_gameboard_clear(void) {
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m_blocks_set_empty();
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int number_blocks_updated = 0;
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struct TetrominoBlock** blocks_updated = m_blocks_get_updated(&number_blocks_updated);
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struct TetrominoBlock **blocks_updated =
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m_blocks_get_updated(&number_blocks_updated);
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r_render_blocks(blocks_updated, number_blocks_updated);
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}
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@@ -37,13 +38,16 @@ void _a_loop(void) {
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int tick_rate = 0; // Guaranteed a better way to do this XD
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while (!WindowShouldClose()) {
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while (m_tetromino_can_spawn()) {
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if (WindowShouldClose())
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return;
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_a_input_process();
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if (tick_rate == 0) {
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m_update();
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tick_rate = 50;
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}
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int number_blocks_updated = 0;
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struct TetrominoBlock** blocks_updated = GetUpdatedBlocks(&number_blocks_updated);
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struct TetrominoBlock **blocks_updated =
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m_blocks_get_updated(&number_blocks_updated);
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r_render_blocks(blocks_updated, number_blocks_updated);
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tick_rate--;
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}
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@@ -25,10 +25,32 @@ struct Tetromino {
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struct TetrominoBlock *blocks[BLOCKS_WITHIN_A_TETROMINO];
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};
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struct TetrominoBlock *_m_block_at_point(struct Point point);
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void _m_blocks_updated_register_block(struct TetrominoBlock *pTetrominoBlock);
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void _m_blocks_alloc(void);
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void _m_blocks_updated_erase(void);
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void _m_blocks_spawn_at_offset_from_spawn_point(enum TetrominoType type,
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struct Offset *offsets);
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void _m_tetromino_spawn(void);
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enum TetrominoType _m_tetromino_type_random(void);
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void _m_block_set_type(struct TetrominoBlock *pTetrominoBlock,
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enum TetrominoType type);
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void _m_falling_tetromino_rotate(void);
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bool _m_falling_tetromino_can_move_right(void);
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void _m_falling_tetromino_translate(struct Offset offset);
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bool _m_point_intersects_static_block(struct Point point);
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bool _m_block_can_fall(struct TetrominoBlock block);
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bool _m_falling_tetromino_can_fall(void);
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void _m_falling_tetromino_fall(void);
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bool _m_block_can_move_left(struct TetrominoBlock block);
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bool _m_falling_tetromino_can_move_left(void);
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bool _m_block_can_move_right(struct TetrominoBlock block);
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// To find block (x,y) index = (x % FIELD_WIDTH) + (y * FIELD_WIDTH)
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// Height doesn't matter but height is just the factor of how tall the board is.
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// And in the end each row is just the next representation of width * units, height just determines row count.
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// Doesn't factor into determining X,Y
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// Height doesn't matter but height is just the factor of how tall the board
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// is. And in the end each row is just the next representation of width *
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// units, height just determines row count. Doesn't factor into determining
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// X,Y
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struct TetrominoBlock *_blocks[FIELD_HEIGHT * FIELD_WIDTH];
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struct TetrominoBlock *_blocks_updated[FIELD_HEIGHT * FIELD_WIDTH] = {NULL};
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int _blocks_updated_length = 0;
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@@ -84,9 +106,7 @@ void m_blocks_set_empty(void) {
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}
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}
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bool m_tetromino_can_spawn(void) {
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return _tetromino_can_spawn;
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}
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bool m_tetromino_can_spawn(void) { return _tetromino_can_spawn; }
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void m_request_falling_tetromino_rotate(void) {
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_should_tetromino_rotate = true;
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@@ -124,12 +144,10 @@ void _m_blocks_alloc(void) {
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}
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}
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void _m_blocks_updated_erase() {
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_blocks_updated_length = 0;
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}
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void _m_blocks_updated_erase() { _blocks_updated_length = 0; }
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void _m_tetromino_spawn() {
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enum TetrominoType type = _m_tetromino_type_get_random();
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enum TetrominoType type = _m_tetromino_type_random();
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struct Offset offsets[BLOCKS_WITHIN_A_TETROMINO];
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@@ -227,7 +245,8 @@ enum TetrominoType _m_tetromino_type_random(void) {
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return (enum TetrominoType)rand() % 6;
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}
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void _m_blocks_spawn_at_offset_from_spawn_point(enum TetrominoType type, struct Offset *offsets) {
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void _m_blocks_spawn_at_offset_from_spawn_point(enum TetrominoType type,
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struct Offset *offsets) {
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fallingTetromino.type = type;
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int index = 0;
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while (index < BLOCKS_WITHIN_A_TETROMINO) {
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@@ -242,7 +261,8 @@ void _m_blocks_spawn_at_offset_from_spawn_point(enum TetrominoType type, struct
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}
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_m_block_set_type(spawnBlock, type);
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// I'm not sure if this makes more sense to be here or return a list of spawnedBlocks to be handled in Parent function
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// I'm not sure if this makes more sense to be here or return a list of
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// spawnedBlocks to be handled in Parent function
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fallingTetromino.blocks[index] = spawnBlock;
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index++;
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@@ -254,7 +274,8 @@ struct TetrominoBlock *_m_block_at_point(struct Point point) {
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return _blocks[(point.x % FIELD_WIDTH) + (point.y * FIELD_WIDTH)];
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}
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void _m_block_set_type(struct TetrominoBlock *pTetrominoBlock, enum TetrominoType type) {
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void _m_block_set_type(struct TetrominoBlock *pTetrominoBlock,
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enum TetrominoType type) {
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pTetrominoBlock->type = type;
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_m_blocks_updated_register_block(pTetrominoBlock);
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}
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@@ -271,7 +292,6 @@ void _m_falling_tetromino_rotate(void) {
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// i'm not a fan of this implementation
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// check this out instead and re-write
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// https://stackoverflow.com/questions/42519/how-do-you-rotate-a-two-dimensional-array?page=1&tab=scoredesc#tab-top
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}
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}
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@@ -294,7 +314,9 @@ void _m_falling_tetromino_translate(struct Offset offset) {
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}
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for (int i = 0; i < BLOCKS_WITHIN_A_TETROMINO; i++) {
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struct Point updatedPoint = { .x = fallingTetromino.blocks[i]->x + offset.xOffset, .y = fallingTetromino.blocks[i]->y + offset.yOffset};
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struct Point updatedPoint = {
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.x = fallingTetromino.blocks[i]->x + offset.xOffset,
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.y = fallingTetromino.blocks[i]->y + offset.yOffset};
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fallingTetromino.blocks[i] = _m_block_at_point(updatedPoint);
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_m_block_set_type(fallingTetromino.blocks[i], fallingTetromino.type);
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@@ -35,16 +35,20 @@ void r_render_blocks(struct TetrominoBlock* *blocks, int length) {
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void r_render_game_over(int score) {
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BeginDrawing();
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ClearBackground(BLACK);
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DrawText("Game Over", SCREEN_WIDTH / 2 - MeasureText("Game Over", 24) / 2, 200, 24, RED);
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DrawText("Game Over", SCREEN_WIDTH / 2 - MeasureText("Game Over", 24) / 2,
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200, 24, RED);
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char *score_message = TextFormat("Score: %d", score);
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DrawText(score_message, SCREEN_WIDTH / 2 - MeasureText(score_message, 18) / 2, 232, 18, RED);
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DrawText(score_message, SCREEN_WIDTH / 2 - MeasureText(score_message, 18) / 2,
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232, 18, RED);
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// Draw a play again button
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EndDrawing();
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}
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void _r_render_block(struct TetrominoBlock blockToRender) {
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Texture2D* textureToRender = _r_get_texture_by_tetromino_type(blockToRender.type);
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DrawTexture(*textureToRender, blockToRender.x * TEXTURE_SIZE, blockToRender.y * TEXTURE_SIZE, WHITE);
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Texture2D *textureToRender =
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_r_get_texture_by_tetromino_type(blockToRender.type);
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DrawTexture(*textureToRender, blockToRender.x * TEXTURE_SIZE,
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blockToRender.y * TEXTURE_SIZE, WHITE);
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}
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Texture2D *_r_get_texture_by_tetromino_type(enum TetrominoType type) {
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BIN
src/tetris-clone
BIN
src/tetris-clone
Binary file not shown.
@@ -1,16 +1,7 @@
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#ifndef TETRIS_CLONE_TETROMINO_H_
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#define TETRIS_CLONE_TETROMINO_H_
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enum TetrominoType {
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TT_I,
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TT_J,
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TT_L,
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TT_O,
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TT_S,
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TT_T,
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TT_Z,
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TT_EMPTY
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};
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enum TetrominoType { TT_I, TT_J, TT_L, TT_O, TT_S, TT_T, TT_Z, TT_EMPTY };
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struct TetrominoBlock {
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unsigned int x;
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