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c7150d2250 | ||
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8240e7bab2 | ||
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b488c5bf55 | ||
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2d8e53ed9c |
Binary file not shown.
@@ -1,2 +0,0 @@
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LDFLAGS = -lGL -lX11 -lm
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BINARIES = ./linux
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@@ -1,3 +0,0 @@
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LDFLAGS = -framework OpenGL -framework CoreFoundation -framework CoreGraphics -framework IOKit -framework Cocoa -framework CoreVideo
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ARCH := $(shell uname -m)
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BINARIES = ./macos-$(ARCH)
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@@ -1,35 +1,151 @@
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#include <stdlib.h>
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#include <string.h>
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#include "matrix.h"
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// TODO Matrix-Funktionen implementieren
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Matrix createMatrix(unsigned int rows, unsigned int cols)
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{
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}
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void clearMatrix(Matrix *matrix)
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{
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}
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void setMatrixAt(MatrixType value, Matrix matrix, unsigned int rowIdx, unsigned int colIdx)
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{
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}
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MatrixType getMatrixAt(const Matrix matrix, unsigned int rowIdx, unsigned int colIdx)
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{
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}
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Matrix add(const Matrix matrix1, const Matrix matrix2)
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{
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}
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Matrix multiply(const Matrix matrix1, const Matrix matrix2)
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{
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}
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#include <stdlib.h>
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#include <string.h>
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#include "matrix.h"
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// TODO Matrix-Funktionen implementieren
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Matrix createMatrix(unsigned int rows, unsigned int cols)
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{
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Matrix m;
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if (rows == 0 || cols == 0)
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{
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m.rows = 0;
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m.cols = 0;
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m.buffer = NULL;
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return m;
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}
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m.rows = rows;
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m.cols = cols;
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m.buffer = (MatrixType *)calloc(rows * cols, sizeof(MatrixType));
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return m;
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}
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void clearMatrix(Matrix *matrix)
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{
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if (matrix != NULL)
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{
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if (matrix->buffer != NULL)
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{
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free(matrix->buffer);
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matrix->buffer = NULL;
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}
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matrix->rows = 0;
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matrix->cols = 0;
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}
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}
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void setMatrixAt(MatrixType value, Matrix matrix, unsigned int rowIdx, unsigned int colIdx)
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{
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if (matrix.buffer != NULL)
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{
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if (rowIdx < matrix.rows && colIdx < matrix.cols)
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{
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matrix.buffer[rowIdx * matrix.cols + colIdx] = value;
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}
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}
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}
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MatrixType getMatrixAt(const Matrix matrix, unsigned int rowIdx, unsigned int colIdx)
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{
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if (matrix.buffer == NULL || rowIdx >= matrix.rows || colIdx >= matrix.cols)
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{
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return UNDEFINED_MATRIX_VALUE;
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}
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return matrix.buffer[rowIdx * matrix.cols + colIdx];
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}
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Matrix add(const Matrix matrix1, const Matrix matrix2)
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{
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Matrix result;
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if (matrix1.buffer == NULL || matrix2.buffer == NULL || matrix1.rows != matrix2.rows)
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{
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result.rows = 0;
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result.cols = 0;
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result.buffer = NULL;
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return result;
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}
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if (matrix1.cols == matrix2.cols)
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{
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result = createMatrix(matrix1.rows, matrix1.cols);
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for (int i = 0; i < matrix1.rows; i++)
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{
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for (int j = 0; j < matrix1.cols; j++)
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{
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MatrixType value = getMatrixAt(matrix1, i, j) + getMatrixAt(matrix2, i, j);
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setMatrixAt(value, result, i, j);
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}
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}
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return result;
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}
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if (matrix1.cols == 1 && matrix2.cols > 1)
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{
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result = createMatrix(matrix1.rows, matrix2.cols);
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for (int i = 0; i < matrix1.rows; i++)
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{
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for (int j = 0; j < matrix2.cols; j++)
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{
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MatrixType value = getMatrixAt(matrix1, i, 0) + getMatrixAt(matrix2, i, j);
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setMatrixAt(value, result, i, j);
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}
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}
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return result;
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}
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else if (matrix2.cols == 1 && matrix1.cols > 1)
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{
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result = createMatrix(matrix1.rows, matrix1.cols);
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for (int i = 0; i < matrix1.rows; i++)
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{
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for (int j = 0; j < matrix1.cols; j++)
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{
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MatrixType value = getMatrixAt(matrix1, i, j) + getMatrixAt(matrix2, i, 0);
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setMatrixAt(value, result, i, j);
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}
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}
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return result;
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}
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//Fall: Unterschiedliche Spaltenanzahl, beide ungleich 1
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result.rows = 0;
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result.cols = 0;
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result.buffer = NULL;
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return result;
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}
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Matrix multiply(const Matrix matrix1, const Matrix matrix2)
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{
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Matrix result;
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if (matrix1.buffer == NULL || matrix2.buffer == NULL || matrix1.cols != matrix2.rows)
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{
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result.rows = 0;
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result.cols = 0;
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result.buffer = NULL;
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return result;
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}
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result = createMatrix(matrix1.rows, matrix2.cols);
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for (int i = 0; i < matrix1.rows; i++)
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{
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for (int j = 0; j < matrix2.cols; j++)
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{
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MatrixType sum = 0;
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for (int k = 0; k < matrix1.cols; k++)
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{
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sum += getMatrixAt(matrix1, i, k) * getMatrixAt(matrix2, k, j);
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}
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setMatrixAt(sum, result, i, j);
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}
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}
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return result;
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}
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@@ -71,6 +71,32 @@ void test_addFailsOnDifferentInputDimensions(void)
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TEST_ASSERT_EQUAL_UINT32(0, result.cols);
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}
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void test_addSupportsBroadcasting(void)
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{
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MatrixType buffer1[] = {1, 2, 3, 4, 5, 6};
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MatrixType buffer2[] = {7, 8};
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Matrix matrix1 = {.rows=2, .cols=3, .buffer=buffer1};
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Matrix matrix2 = {.rows=2, .cols=1, .buffer=buffer2};
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Matrix result1 = add(matrix1, matrix2);
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Matrix result2 = add(matrix2, matrix1);
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float expectedResults[] = {8, 9, 10, 12, 13, 14};
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TEST_ASSERT_EQUAL_UINT32(matrix1.rows, result1.rows);
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TEST_ASSERT_EQUAL_UINT32(matrix1.cols, result1.cols);
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TEST_ASSERT_EQUAL_UINT32(matrix1.rows, result2.rows);
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TEST_ASSERT_EQUAL_UINT32(matrix1.cols, result2.cols);
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TEST_ASSERT_EQUAL_INT(sizeof(expectedResults)/sizeof(expectedResults[0]), result1.rows * result1.cols);
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TEST_ASSERT_EQUAL_FLOAT_ARRAY(expectedResults, result1.buffer, result1.cols * result1.rows);
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TEST_ASSERT_EQUAL_INT(sizeof(expectedResults)/sizeof(expectedResults[0]), result2.rows * result2.cols);
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TEST_ASSERT_EQUAL_FLOAT_ARRAY(expectedResults, result2.buffer, result2.cols * result2.rows);
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free(result1.buffer);
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free(result2.buffer);
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}
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void test_multiplyReturnsCorrectResults(void)
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{
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MatrixType buffer1[] = {1, 2, 3, 4, 5, 6};
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@@ -159,6 +185,7 @@ int main()
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RUN_TEST(test_clearMatrixSetsMembersToNull);
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RUN_TEST(test_addReturnsCorrectResult);
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RUN_TEST(test_addFailsOnDifferentInputDimensions);
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RUN_TEST(test_addSupportsBroadcasting);
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RUN_TEST(test_multiplyReturnsCorrectResults);
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RUN_TEST(test_multiplyFailsOnWrongInputDimensions);
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RUN_TEST(test_getMatrixAtReturnsCorrectResult);
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