mirror of https://github.com/bsnes-emu/bsnes.git
225 lines
6.3 KiB
C++
Executable File
225 lines
6.3 KiB
C++
Executable File
#ifdef NALL_MOSAIC_INTERNAL_HPP
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namespace nall {
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namespace mosaic {
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struct context {
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unsigned offset;
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unsigned width;
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unsigned height;
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unsigned count;
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bool endian; //0 = lsb, 1 = msb
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bool order; //0 = linear, 1 = planar
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unsigned depth; //1 - 24bpp
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unsigned blockWidth;
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unsigned blockHeight;
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unsigned blockStride;
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unsigned blockOffset;
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vector<unsigned> block;
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unsigned tileWidth;
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unsigned tileHeight;
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unsigned tileStride;
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unsigned tileOffset;
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vector<unsigned> tile;
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unsigned mosaicWidth;
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unsigned mosaicHeight;
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unsigned mosaicStride;
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unsigned mosaicOffset;
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vector<unsigned> mosaic;
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unsigned paddingWidth;
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unsigned paddingHeight;
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unsigned paddingColor;
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vector<unsigned> palette;
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inline unsigned objectWidth() const { return blockWidth * tileWidth * mosaicWidth + paddingWidth; }
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inline unsigned objectHeight() const { return blockHeight * tileHeight * mosaicHeight + paddingHeight; }
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inline unsigned objectSize() const {
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unsigned size = blockStride * tileWidth * tileHeight * mosaicWidth * mosaicHeight
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+ blockOffset * tileHeight * mosaicWidth * mosaicHeight
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+ tileStride * mosaicWidth * mosaicHeight
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+ tileOffset * mosaicHeight;
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return max(1u, size);
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}
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inline unsigned eval(const string &expression) {
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intmax_t result;
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if(fixedpoint::eval(expression, result) == false) return 0u;
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return result;
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}
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inline void eval(vector<unsigned> &buffer, const string &expression_) {
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string expression = expression_;
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bool function = false;
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for(auto &c : expression) {
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if(c == '(') function = true;
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if(c == ')') function = false;
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if(c == ',' && function == true) c = ';';
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}
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lstring list = expression.split(",");
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for(auto &item : list) {
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item.trim();
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if(item.wildcard("f(?*) ?*")) {
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item.ltrim<1>("f(");
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lstring part = item.split<1>(") ");
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lstring args = part[0].split<3>(";");
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for(auto &item : args) item.trim();
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unsigned length = eval(args(0, "0"));
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unsigned offset = eval(args(1, "0"));
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unsigned stride = eval(args(2, "0"));
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if(args.size() < 2) offset = buffer.size();
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if(args.size() < 3) stride = 1;
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for(unsigned n = 0; n < length; n++) {
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string fn = part[1];
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fn.replace("n", decimal(n));
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fn.replace("o", decimal(offset));
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fn.replace("p", decimal(buffer.size()));
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buffer.resize(offset + 1);
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buffer[offset] = eval(fn);
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offset += stride;
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}
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} else if(item.wildcard("base64*")) {
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unsigned offset = 0;
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item.ltrim<1>("base64");
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if(item.wildcard("(?*) *")) {
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item.ltrim<1>("(");
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lstring part = item.split<1>(") ");
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offset = eval(part[0]);
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item = part(1, "");
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}
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item.trim();
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for(auto &c : item) {
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if(c >= 'A' && c <= 'Z') buffer.append(offset + c - 'A' + 0);
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if(c >= 'a' && c <= 'z') buffer.append(offset + c - 'a' + 26);
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if(c >= '0' && c <= '9') buffer.append(offset + c - '0' + 52);
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if(c == '-') buffer.append(offset + 62);
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if(c == '_') buffer.append(offset + 63);
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}
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} else if(item.wildcard("file *")) {
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item.ltrim<1>("file ");
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item.trim();
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//...
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} else if(item.empty() == false) {
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buffer.append(eval(item));
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}
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}
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}
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inline void parse(const string &data) {
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reset();
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lstring lines = data.split("\n");
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for(auto &line : lines) {
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lstring part = line.split<1>(":");
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if(part.size() != 2) continue;
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part[0].trim();
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part[1].trim();
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if(part[0] == "offset") offset = eval(part[1]);
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if(part[0] == "width") width = eval(part[1]);
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if(part[0] == "height") height = eval(part[1]);
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if(part[0] == "count") count = eval(part[1]);
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if(part[0] == "endian") endian = eval(part[1]);
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if(part[0] == "order") order = eval(part[1]);
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if(part[0] == "depth") depth = eval(part[1]);
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if(part[0] == "blockWidth") blockWidth = eval(part[1]);
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if(part[0] == "blockHeight") blockHeight = eval(part[1]);
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if(part[0] == "blockStride") blockStride = eval(part[1]);
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if(part[0] == "blockOffset") blockOffset = eval(part[1]);
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if(part[0] == "block") eval(block, part[1]);
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if(part[0] == "tileWidth") tileWidth = eval(part[1]);
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if(part[0] == "tileHeight") tileHeight = eval(part[1]);
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if(part[0] == "tileStride") tileStride = eval(part[1]);
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if(part[0] == "tileOffset") tileOffset = eval(part[1]);
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if(part[0] == "tile") eval(tile, part[1]);
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if(part[0] == "mosaicWidth") mosaicWidth = eval(part[1]);
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if(part[0] == "mosaicHeight") mosaicHeight = eval(part[1]);
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if(part[0] == "mosaicStride") mosaicStride = eval(part[1]);
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if(part[0] == "mosaicOffset") mosaicOffset = eval(part[1]);
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if(part[0] == "mosaic") eval(mosaic, part[1]);
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if(part[0] == "paddingWidth") paddingWidth = eval(part[1]);
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if(part[0] == "paddingHeight") paddingHeight = eval(part[1]);
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if(part[0] == "paddingColor") paddingColor = eval(part[1]);
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if(part[0] == "palette") eval(palette, part[1]);
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}
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sanitize();
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}
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inline bool load(const string &filename) {
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string filedata;
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if(filedata.readfile(filename) == false) return false;
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parse(filedata);
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return true;
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}
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inline void sanitize() {
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if(depth < 1) depth = 1;
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if(depth > 24) depth = 24;
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if(blockWidth < 1) blockWidth = 1;
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if(blockHeight < 1) blockHeight = 1;
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if(tileWidth < 1) tileWidth = 1;
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if(tileHeight < 1) tileHeight = 1;
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if(mosaicWidth < 1) mosaicWidth = 1;
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if(mosaicHeight < 1) mosaicHeight = 1;
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}
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inline void reset() {
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offset = 0;
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width = 0;
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height = 0;
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count = 0;
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endian = 1;
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order = 0;
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depth = 1;
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blockWidth = 1;
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blockHeight = 1;
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blockStride = 0;
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blockOffset = 0;
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block.reset();
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tileWidth = 1;
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tileHeight = 1;
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tileStride = 0;
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tileOffset = 0;
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tile.reset();
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mosaicWidth = 1;
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mosaicHeight = 1;
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mosaicStride = 0;
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mosaicOffset = 0;
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mosaic.reset();
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paddingWidth = 0;
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paddingHeight = 0;
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paddingColor = 0x000000;
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palette.reset();
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}
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inline context() {
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reset();
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}
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};
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}
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}
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#endif
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