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7
Commits
| Author | SHA1 | Date | |
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e25875fac6 | ||
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2dffac5f07 | ||
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b30c2a3808 | ||
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89e99abf8e | ||
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113cb5adb3 | ||
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bf7355b3c5 | ||
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7a373d5940 |
@@ -7,25 +7,6 @@
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#define FILE_HEADER_STRING "__info2_image_file_format__"
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// TODO Implementieren Sie geeignete Hilfsfunktionen für das Lesen der Bildserie aus einer Datei
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static int checkFileHeader(FILE *fp)
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{
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if (!fp) // Datei konnte nicht geöffnet werden
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return 0;
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char buffer[BUFFER_SIZE];
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size_t headerLen = strlen(FILE_HEADER_STRING);
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if (headerLen >= BUFFER_SIZE) // Safety Check
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return 0;
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if (fread(buffer, 1, headerLen, fp) != headerLen)
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return 0;
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buffer[headerLen] = '\0';
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if (strcmp(buffer, FILE_HEADER_STRING) != 0)
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return 0;
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return 1; // Header stimmt
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}
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// TODO Vervollständigen Sie die Funktion readImages unter Benutzung Ihrer Hilfsfunktionen
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GrayScaleImageSeries *readImages(const char *path)
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@@ -38,10 +19,4 @@ GrayScaleImageSeries *readImages(const char *path)
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// TODO Vervollständigen Sie die Funktion clearSeries, welche eine Bildserie vollständig aus dem Speicher freigibt
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void clearSeries(GrayScaleImageSeries *series)
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{
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if (series == NULL)
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return;
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free(series->images);
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free(series->labels);
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free(series);
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}
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@@ -6,47 +6,97 @@
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Matrix createMatrix(unsigned int rows, unsigned int cols)
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{
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Matrix m = {NULL, rows, cols}; // Wahrscheinlich in Programm bereits enthalten;
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if (rows > 0 && cols > 0)
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{
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m.buffer = (MatrixType *)calloc(rows * cols, sizeof(MatrixType));
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if (m.buffer == NULL)
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{
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m.rows = 0;
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m.cols = 0;
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}
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}
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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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//test
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if (matrix != NULL)
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{
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free(matrix->buffer);
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matrix->buffer = NULL;
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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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// Matrix matrix zu Matrix *matrix, empfehlung
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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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if (rowIdx < matrix.rows && colIdx < matrix.cols && matrix.buffer != NULL)
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matrix.buffer[rowIdx * matrix.cols + colIdx] = value;
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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)
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{
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if (rowIdx < matrix.rows && colIdx < matrix.cols)
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{
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return matrix.buffer[rowIdx * matrix.cols + colIdx];
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}
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}
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else
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{
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return 0;
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}
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if (rowIdx >= matrix.rows || colIdx >= matrix.cols || matrix.buffer == NULL)
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return 0; // Sicherheitscheck
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return matrix.buffer[rowIdx * matrix.cols + colIdx];
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}
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// TODO: Funktionen implementieren
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Matrix add(const Matrix matrix1, const Matrix matrix2)
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{
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// test, if two matrix has exact size
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if (matrix1.rows != matrix2.rows || matrix1.cols != matrix2.cols)
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return createMatrix(0, 0);
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Matrix result_add = createMatrix(matrix1.rows, matrix1.cols);
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for (int r = 0; r < matrix1.rows; r++)
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{
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for (int c = 0; c < matrix1.cols; c++)
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{
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// TODO: matrix_add initialisieren
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// matrix_add[r][c] = matrix1[r][c] + matrix2[r][c]
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MatrixType sum = getMatrixAt(matrix1, r, c) + getMatrixAt(matrix2, r, c);
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setMatrixAt(sum, result_add, r, c); // evtl re
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}
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}
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return result_add;
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}
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Matrix multiply(const Matrix matrix1, const Matrix matrix2)
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{
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// Needed: rows/Zeilen, collums/Spalten
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MatrixType buffer_add;
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// Probe ob Spalten1 = Zeilen2
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if (matrix1.cols != matrix2.rows)
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return createMatrix(0, 0);
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Matrix result_mul = createMatrix(matrix1.rows, matrix2.cols); // ""
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for (int index = 0; index < matrix1.rows; index++)
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{
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for (int shift = 0; shift < matrix2.cols; shift++)
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{
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buffer_add = 0;
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for (int skalar = 0; skalar < matrix1.cols; skalar++)
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// TODO: matrix_add initialisieren
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{
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// buffer_add += matrix1[index][skalar]*matrix2[skalar][index];
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buffer_add += getMatrixAt(matrix1, index, skalar) * getMatrixAt(matrix2, skalar, shift);
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}
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// matrix_mul[index][shift] = buffer_add;
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setMatrixAt(buffer_add, result_mul, index, shift); // result als Pointer, also mit &result
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}
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}
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return result_mul;
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}
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