Update padding and deactivate borders.
Borders are merged with padding for now.
This commit is contained in:
parent
4f46d32b9e
commit
242813ed41
2
Makefile
2
Makefile
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@ -9,7 +9,7 @@ SRC = rotation.cpp \
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HEADERS = image.h \
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pnm.h
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OBJS = $(patsubst %.cpp,%.o,$(SRC))
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IMG = img/lena_1024.pgm
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IMG = img/lena_3000.pgm
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all: $(OBJS)
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$(CXX) $(CXXFLAGS) $(LFLAGS) $(OBJS) -o $(BUILD_DIR)/rotation
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120
rotation.cpp
120
rotation.cpp
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@ -8,6 +8,7 @@
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#include <cstring>
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#include <chrono>
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#include <cstdlib>
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#include <memory>
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#include <xmmintrin.h>
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#include <emmintrin.h>
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@ -181,33 +182,17 @@ int get_iteration(int distance, int upper_bound, int step)
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uint16_t* generate_padding_table(Image const& rotated,
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Point src_rotated_origin,
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Point const& qdx, Point const& qdy,
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int src_qwidth, int src_qheight)
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int src_qwidth, int src_qheight,
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int q_pos)
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{
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uint16_t* padding_table = new uint16_t[rotated.height];
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// We suppose the image is square.
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if (qdx.x == 0 || qdx.y == 0)
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{
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memset(padding_table, 0, sizeof (uint16_t) * rotated.height);
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return padding_table;
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}
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for (unsigned int i = 0; i < rotated.height; ++i)
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{
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int y_range = get_iteration(src_rotated_origin.y, src_qheight, qdx.y);
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if (y_range < 0)
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{
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cout << "Negative Y range" << endl;
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abort();
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}
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int x_range = get_iteration(src_rotated_origin.x, src_qwidth - q_pos, qdx.x);
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int y_range = get_iteration(src_rotated_origin.y, src_qheight - q_pos, qdx.y);
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int x_range = get_iteration(src_rotated_origin.x, src_qwidth, qdx.x);
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if (x_range < 0)
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{
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cout << "Negative X range" << endl;
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abort();
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}
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padding_table[i] = max(x_range, y_range);
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padding_table[i] = max(max(x_range, y_range), 0);
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Point border(src_rotated_origin.x + padding_table[i] * qdx.x,
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src_rotated_origin.y + padding_table[i] * qdx.y);
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@ -255,40 +240,27 @@ uint16_t* generate_padding_table(Image const& rotated,
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uint16_t* generate_padding_table_back(Image const& rotated,
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Point src_rotated_origin,
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Point const& qdx,
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Point const& qdy,
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int src_qwidth,
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int src_qheight,
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Point const& qdx, Point const& qdy,
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int src_qwidth, int src_qheight,
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int q_pos,
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uint16_t const* front_padding)
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{
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uint16_t* padding_table = new uint16_t[rotated.height];
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// We suppose the image is square.
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if (qdx.x == 0 || qdx.y == 0)
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{
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memset(padding_table, 0, sizeof (uint16_t) * rotated.height);
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return padding_table;
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}
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src_rotated_origin.x += (rotated.width - 1) * qdx.x;
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src_rotated_origin.y += (rotated.width - 1) * qdx.y;
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for (unsigned int i = 0; i < rotated.height; ++i)
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// This is actually a border
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padding_table[0] = rotated.width - front_padding[0];
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src_rotated_origin += qdy;
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padding_table[rotated.height - 1] = rotated.width - front_padding[rotated.height - 1];
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for (unsigned int i = 1; i < rotated.height - 1; ++i)
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{
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int y_range = get_iteration(src_rotated_origin.y, src_qheight, -qdx.y);
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if (y_range < 0)
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{
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cout << "Negative back Y range at line " << i << endl;
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abort();
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}
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int x_range = get_iteration(src_rotated_origin.x, src_qwidth - q_pos, -qdx.x);
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int y_range = get_iteration(src_rotated_origin.y, src_qheight - q_pos, -qdx.y);
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int x_range = get_iteration(src_rotated_origin.x, src_qwidth, -qdx.x);
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if (x_range < 0)
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{
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cout << "Negative back X range at line " << i << endl;
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abort();
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}
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padding_table[i] = max(x_range, y_range);
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padding_table[i] = max(max(x_range, y_range), 0);
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padding_table[i] = min((int) padding_table[i], (int) rotated.width - front_padding[i]);
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src_rotated_origin += qdy;
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@ -554,23 +526,25 @@ Image* rotate(Image const& src, double angle)
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Point src_rotated_origin(rot_origin_in_src.x * q_pos,
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rot_origin_in_src.y * q_pos);
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// Padding
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uint16_t* padding_table = generate_padding_table(*rotated, src_rotated_origin,
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qdx, qdy,
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src_qwidth, src_qheight);
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uint16_t* back_padding_table = generate_padding_table_back(*rotated, src_rotated_origin,
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qdx, qdy,
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src_qwidth, src_qheight,
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padding_table);
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uint16_t* front_border = generate_border_table(padding_table, back_padding_table, *rotated);
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uint16_t* back_border = generate_border_table_back(padding_table, front_border, back_padding_table, *rotated);
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unique_ptr<uint16_t[]> padding_table(generate_padding_table(*rotated, src_rotated_origin,
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qdx, qdy,
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src_qwidth, src_qheight,
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q_pos));
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unique_ptr<uint16_t[]> back_padding_table(generate_padding_table_back(*rotated, src_rotated_origin,
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qdx, qdy,
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src_qwidth, src_qheight,
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q_pos,
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padding_table.get()));
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// uint16_t* front_border = generate_border_table(padding_table, back_padding_table, *rotated);
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// uint16_t* back_border = generate_border_table_back(padding_table, front_border, back_padding_table, *rotated);
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for (int y = 0; y < height; ++y)
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{
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// TODO: compact these structure to increase locality
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int const left_padding = padding_table[y];
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int const left_border = front_border[y];
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int const right_border = back_border[y];
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int const left_border = 0;
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int const right_border = 0;
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int const right_padding = back_padding_table[y];
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int const core_pixels = width - left_padding - left_border - right_border - right_padding;
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@ -595,7 +569,7 @@ Image* rotate(Image const& src, double angle)
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// Left padding
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// TODO: set to background value
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memset(buffer + buffer_index, 50, left_padding * sizeof (pvalue_t));
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memset(buffer + buffer_index, 0, left_padding * sizeof (pvalue_t));
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buffer_index += left_padding;
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// Border
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@ -610,30 +584,7 @@ Image* rotate(Image const& src, double angle)
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// Body
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for (int x = 0; x < core_pixels; ++x, ++buffer_index)
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{
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if (src_rotated_point.x < 0 || src_rotated_point.y < 0
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|| src_rotated_point.x >= src_qwidth - q_pos || src_rotated_point.y >= src_qheight - q_pos)
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{
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// LOG << "Out-of-bounds point!" << endl;
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// cout << " x: " << x << endl;
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// cout << " src_rotated_point: " << src_rotated_point << endl;
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// cout << " qdx: " << qdx << endl;
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// cout << " q_pos: " << q_pos << endl;
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// cout << " rotated point: (" << x + left_padding + left_border << ", " << y << ")" << endl;
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// cout << " src point: (" << (src_rotated_point.x >> q_pos_pow) << ", " << (src_rotated_point.y >> q_pos_pow) << ")" << endl;
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// cout << " src point: (" << (src_rotated_point.x / q_pos) << ", " << (src_rotated_point.y / q_pos) << ")" << endl;
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// cout << " width: " << width << endl;
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// cout << " left padding: " << left_padding << endl;
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// cout << " left border: " << left_border << endl;
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// cout << " core pixels: " << core_pixels << endl;
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// cout << " right border: " << right_border << endl;
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// cout << " right padding: " << right_padding << endl;
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buffer[buffer_index] = 255;
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}
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else
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{
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rotate_pixel(src, src_rotated_point, buffer, buffer_index, q_pos_pow);
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}
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rotate_pixel(src, src_rotated_point, buffer, buffer_index, q_pos_pow);
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src_rotated_point += qdx;
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}
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@ -646,12 +597,11 @@ Image* rotate(Image const& src, double angle)
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// Right padding
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// TODO: set to background value
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memset(buffer + buffer_index, 100, right_padding * sizeof (pvalue_t));
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memset(buffer + buffer_index, 0, right_padding * sizeof (pvalue_t));
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buffer_index += right_padding;
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src_rotated_origin += qdy;
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}
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// cout << endl;
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return rotated;
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}
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@ -874,7 +824,7 @@ int main(int argc, char* argv[])
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double const step = 5;
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bool save_output_img = true;
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bool print_each_run = true;
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bool print_each_run = false;
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// No tile
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Image img(argv[1]);
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