mirror of https://github.com/YosysHQ/icestorm.git
226 lines
5.3 KiB
C++
226 lines
5.3 KiB
C++
#include <stdio.h>
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#include <stdlib.h>
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#include <unistd.h>
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#include <assert.h>
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#include <string.h>
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#include <string>
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#include <vector>
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#include <map>
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#include <set>
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FILE *fin, *fout;
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std::string config_device;
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std::vector<std::vector<std::string>> config_tile_type;
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std::vector<std::vector<std::vector<std::vector<bool>>>> config_bits;
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struct net_segment_name
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{
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int tile_x, tile_y;
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std::string segment_name;
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net_segment_name(int x, int y, std::string n) :
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tile_x(x), tile_y(y), segment_name(n) { }
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bool operator<(const net_segment_name &other) const {
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if (tile_x != other.tile_x)
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return tile_x < other.tile_x;
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if (tile_y != other.tile_y)
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return tile_y < other.tile_y;
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return segment_name < other.segment_name;
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}
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};
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std::map<net_segment_name, int> segment_to_net;
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std::vector<std::set<net_segment_name>> net_to_segments;
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std::map<int, std::set<int>> net_buffers, net_rbuffers, net_routing;
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std::set<int> used_nets;
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void read_chipdb()
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{
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char buffer[1024];
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snprintf(buffer, 1024, "/usr/local/share/icebox/chipdb-%s.txt", config_device.c_str());
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FILE *fdb = fopen(buffer, "r");
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if (fdb == nullptr) {
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perror("Can't open chipdb file");
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exit(1);
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}
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std::string mode;
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int current_net = -1;
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std::string thiscfg;
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while (fgets(buffer, 1024, fdb))
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{
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if (buffer[0] == '#')
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continue;
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const char *tok = strtok(buffer, " \t\r\n");
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if (tok == nullptr)
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continue;
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if (tok[0] == '.')
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{
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mode = tok;
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if (mode == ".net")
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{
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current_net = atoi(strtok(nullptr, " \t\r\n"));
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if (current_net >= int(net_to_segments.size()))
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net_to_segments.resize(current_net+1);
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}
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if (mode == ".buffer" || mode == ".routing")
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{
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int tile_x = atoi(strtok(nullptr, " \t\r\n"));
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int tile_y = atoi(strtok(nullptr, " \t\r\n"));
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current_net = atoi(strtok(nullptr, " \t\r\n"));
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thiscfg = "";
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while ((tok = strtok(nullptr, " \t\r\n")) != nullptr) {
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int bit_row, bit_col, rc;
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rc = sscanf(tok, "B%d[%d]", &bit_row, &bit_col);
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assert(rc == 2);
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thiscfg.push_back(config_bits[tile_x][tile_y][bit_row][bit_col] ? '1' : '0');
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}
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}
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continue;
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}
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if (mode == ".net") {
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int tile_x = atoi(tok);
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int tile_y = atoi(strtok(nullptr, " \t\r\n"));
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std::string segment_name = strtok(nullptr, " \t\r\n");
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net_segment_name seg(tile_x, tile_y, segment_name);
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segment_to_net[seg] = current_net;
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net_to_segments[current_net].insert(seg);
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}
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if (mode == ".buffer" && !strcmp(tok, thiscfg.c_str())) {
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int other_net = atoi(strtok(nullptr, " \t\r\n"));
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net_rbuffers[current_net].insert(other_net);
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net_buffers[other_net].insert(current_net);
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used_nets.insert(current_net);
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used_nets.insert(other_net);
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}
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if (mode == ".routing" && !strcmp(tok, thiscfg.c_str())) {
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int other_net = atoi(strtok(nullptr, " \t\r\n"));
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net_routing[current_net].insert(other_net);
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net_routing[other_net].insert(current_net);
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used_nets.insert(current_net);
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used_nets.insert(other_net);
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}
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}
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fclose(fdb);
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}
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void read_config()
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{
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char buffer[128];
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int tile_x, tile_y, line_nr = -1;
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while (fgets(buffer, 128, fin))
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{
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if (buffer[0] == '.')
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{
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line_nr = -1;
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const char *tok = strtok(buffer, " \t\r\n");
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if (!strcmp(tok, ".device"))
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{
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config_device = strtok(nullptr, " \t\r\n");
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} else
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if (!strcmp(tok, ".io_tile") || !strcmp(tok, ".logic_tile") ||
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!strcmp(tok, ".ramb_tile") || !strcmp(tok, ".ramt_tile"))
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{
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line_nr = 0;
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tile_x = atoi(strtok(nullptr, " \t\r\n"));
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tile_y = atoi(strtok(nullptr, " \t\r\n"));
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if (tile_x >= int(config_tile_type.size())) {
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config_tile_type.resize(tile_x+1);
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config_bits.resize(tile_x+1);
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}
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if (tile_y >= int(config_tile_type.at(tile_x).size())) {
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config_tile_type.at(tile_x).resize(tile_y+1);
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config_bits.at(tile_x).resize(tile_y+1);
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}
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if (!strcmp(tok, ".io_tile"))
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config_tile_type.at(tile_x).at(tile_y) = "io";
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if (!strcmp(tok, ".logic_tile"))
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config_tile_type.at(tile_x).at(tile_y) = "logic";
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if (!strcmp(tok, ".ramb_tile"))
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config_tile_type.at(tile_x).at(tile_y) = "ramb";
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if (!strcmp(tok, ".ramt_tile"))
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config_tile_type.at(tile_x).at(tile_y) = "ramt";
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}
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} else
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if (line_nr >= 0)
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{
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assert(int(config_bits.at(tile_x).at(tile_y).size()) == line_nr);
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config_bits.at(tile_x).at(tile_y).resize(line_nr+1);
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for (int i = 0; buffer[i] == '0' || buffer[i] == '1'; i++)
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config_bits.at(tile_x).at(tile_y).at(line_nr).push_back(buffer[i] == '1');
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line_nr++;
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}
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}
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}
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void help(const char *cmd)
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{
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printf("\n");
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printf("Usage: %s [options] input.txt [output.v]\n", cmd);
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printf("\n");
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exit(1);
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}
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int main(int argc, char **argv)
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{
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int opt;
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while ((opt = getopt(argc, argv, "")) != -1)
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{
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switch (opt)
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{
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default:
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help(argv[0]);
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}
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}
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if (optind+1 == argc) {
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fin = fopen(argv[optind], "r");
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if (fin == nullptr) {
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perror("Can't open input file");
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exit(1);
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}
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fout = stdout;
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} else
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if (optind+2 == argc) {
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fin = fopen(argv[optind], "r");
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if (fin == nullptr) {
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perror("Can't open input file");
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exit(1);
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}
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fout = fopen(argv[optind+1], "w");
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if (fout == nullptr) {
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perror("Can't open output file");
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exit(1);
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}
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} else
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help(argv[0]);
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printf("// Reading input .txt file..\n");
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read_config();
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printf("// Reading chipdb file..\n");
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read_chipdb();
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return 0;
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}
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