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							320 lines
						
					
					
						
							9.5 KiB
						
					
					
				
			
		
		
	
	
							320 lines
						
					
					
						
							9.5 KiB
						
					
					
				| #include "selfdrive/ui/replay/util.h"
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| 
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| #include <bzlib.h>
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| #include <curl/curl.h>
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| #include <openssl/sha.h>
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| 
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| #include <cstring>
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| #include <cassert>
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| #include <cmath>
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| #include <fstream>
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| #include <iostream>
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| #include <mutex>
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| #include <numeric>
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| 
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| #include "common/timing.h"
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| #include "common/util.h"
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| 
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| ReplayMessageHandler message_handler = nullptr;
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| DownloadProgressHandler download_progress_handler = nullptr;
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| 
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| void installMessageHandler(ReplayMessageHandler handler) { message_handler = handler; }
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| void installDownloadProgressHandler(DownloadProgressHandler handler) { download_progress_handler = handler; }
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| 
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| void logMessage(ReplyMsgType type, const char *fmt, ...) {
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|   static std::mutex lock;
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|   std::lock_guard lk(lock);
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| 
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|   char *msg_buf = nullptr;
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|   va_list args;
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|   va_start(args, fmt);
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|   int ret = vasprintf(&msg_buf, fmt, args);
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|   va_end(args);
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|   if (ret <= 0 || !msg_buf) return;
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| 
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|   if (message_handler) {
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|     message_handler(type, msg_buf);
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|   } else {
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|     if (type == ReplyMsgType::Debug) {
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|       std::cout << "\033[38;5;248m" << msg_buf << "\033[00m" << std::endl;
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|     } else if (type == ReplyMsgType::Warning) {
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|       std::cout << "\033[38;5;227m" << msg_buf << "\033[00m" << std::endl;
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|     } else if (type == ReplyMsgType::Critical) {
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|       std::cout << "\033[38;5;196m" << msg_buf << "\033[00m" << std::endl;
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|     } else {
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|       std::cout << msg_buf << std::endl;
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|     }
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|   }
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| 
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|   free(msg_buf);
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| }
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| 
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| namespace {
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| 
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| struct CURLGlobalInitializer {
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|   CURLGlobalInitializer() { curl_global_init(CURL_GLOBAL_DEFAULT); }
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|   ~CURLGlobalInitializer() { curl_global_cleanup(); }
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| };
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| 
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| static CURLGlobalInitializer curl_initializer;
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| 
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| template <class T>
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| struct MultiPartWriter {
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|   T *buf;
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|   size_t *total_written;
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|   size_t offset;
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|   size_t end;
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| 
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|   size_t write(char *data, size_t size, size_t count) {
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|     size_t bytes = size * count;
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|     if ((offset + bytes) > end) return 0;
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| 
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|     if constexpr (std::is_same<T, std::string>::value) {
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|       memcpy(buf->data() + offset, data, bytes);
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|     } else if constexpr (std::is_same<T, std::ofstream>::value) {
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|       buf->seekp(offset);
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|       buf->write(data, bytes);
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|     }
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| 
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|     offset += bytes;
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|     *total_written += bytes;
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|     return bytes;
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|   }
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| };
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| 
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| template <class T>
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| size_t write_cb(char *data, size_t size, size_t count, void *userp) {
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|   auto w = (MultiPartWriter<T> *)userp;
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|   return w->write(data, size, count);
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| }
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| 
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| size_t dumy_write_cb(char *data, size_t size, size_t count, void *userp) { return size * count; }
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| 
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| struct DownloadStats {
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|   void add(const std::string &url, uint64_t total_bytes) {
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|     std::lock_guard lk(lock);
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|     items[url] = {0, total_bytes};
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|   }
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| 
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|   void remove(const std::string &url) {
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|     std::lock_guard lk(lock);
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|     items.erase(url);
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|   }
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| 
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|   void update(const std::string &url, uint64_t downloaded, bool success = true) {
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|     std::lock_guard lk(lock);
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|     items[url].first = downloaded;
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| 
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|     auto stat = std::accumulate(items.begin(), items.end(), std::pair<int, int>{}, [=](auto &a, auto &b){
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|       return std::pair{a.first + b.second.first, a.second + b.second.second};
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|     });
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|     double tm = millis_since_boot();
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|     if (download_progress_handler && ((tm - prev_tm) > 500 || !success || stat.first >= stat.second)) {
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|       download_progress_handler(stat.first, stat.second, success);
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|       prev_tm = tm;
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|     }
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|   }
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| 
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|   std::mutex lock;
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|   std::map<std::string, std::pair<uint64_t, uint64_t>> items;
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|   double prev_tm = 0;
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| };
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| 
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| } // namespace
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| 
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| std::string formattedDataSize(size_t size) {
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|   if (size < 1024) {
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|     return std::to_string(size) + " B";
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|   } else if (size < 1024 * 1024) {
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|     return util::string_format("%.2f KB", (float)size / 1024);
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|   } else {
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|     return util::string_format("%.2f MB", (float)size / (1024 * 1024));
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|   }
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| }
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| 
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| size_t getRemoteFileSize(const std::string &url, std::atomic<bool> *abort) {
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|   CURL *curl = curl_easy_init();
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|   if (!curl) return -1;
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| 
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|   curl_easy_setopt(curl, CURLOPT_URL, url.c_str());
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|   curl_easy_setopt(curl, CURLOPT_WRITEFUNCTION, dumy_write_cb);
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|   curl_easy_setopt(curl, CURLOPT_HEADER, 1);
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|   curl_easy_setopt(curl, CURLOPT_NOBODY, 1);
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| 
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|   CURLM *cm = curl_multi_init();
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|   curl_multi_add_handle(cm, curl);
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|   int still_running = 1;
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|   while (still_running > 0 && !(abort && *abort)) {
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|     CURLMcode mc = curl_multi_perform(cm, &still_running);
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|     if (!mc) curl_multi_wait(cm, nullptr, 0, 1000, nullptr);
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|   }
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| 
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|   double content_length = -1;
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|   curl_easy_getinfo(curl, CURLINFO_CONTENT_LENGTH_DOWNLOAD, &content_length);
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|   curl_multi_remove_handle(cm, curl);
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|   curl_easy_cleanup(curl);
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|   curl_multi_cleanup(cm);
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|   return content_length > 0 ? (size_t)content_length : 0;
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| }
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| 
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| std::string getUrlWithoutQuery(const std::string &url) {
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|   size_t idx = url.find("?");
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|   return (idx == std::string::npos ? url : url.substr(0, idx));
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| }
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| 
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| template <class T>
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| bool httpDownload(const std::string &url, T &buf, size_t chunk_size, size_t content_length, std::atomic<bool> *abort) {
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|   static DownloadStats download_stats;
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|   download_stats.add(url, content_length);
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| 
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|   int parts = 1;
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|   if (chunk_size > 0 && content_length > 10 * 1024 * 1024) {
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|     parts = std::nearbyint(content_length / (float)chunk_size);
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|     parts = std::clamp(parts, 1, 5);
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|   }
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| 
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|   CURLM *cm = curl_multi_init();
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|   size_t written = 0;
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|   std::map<CURL *, MultiPartWriter<T>> writers;
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|   const int part_size = content_length / parts;
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|   for (int i = 0; i < parts; ++i) {
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|     CURL *eh = curl_easy_init();
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|     writers[eh] = {
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|         .buf = &buf,
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|         .total_written = &written,
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|         .offset = (size_t)(i * part_size),
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|         .end = i == parts - 1 ? content_length : (i + 1) * part_size,
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|     };
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|     curl_easy_setopt(eh, CURLOPT_WRITEFUNCTION, write_cb<T>);
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|     curl_easy_setopt(eh, CURLOPT_WRITEDATA, (void *)(&writers[eh]));
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|     curl_easy_setopt(eh, CURLOPT_URL, url.c_str());
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|     curl_easy_setopt(eh, CURLOPT_RANGE, util::string_format("%d-%d", writers[eh].offset, writers[eh].end - 1).c_str());
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|     curl_easy_setopt(eh, CURLOPT_HTTPGET, 1);
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|     curl_easy_setopt(eh, CURLOPT_NOSIGNAL, 1);
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|     curl_easy_setopt(eh, CURLOPT_FOLLOWLOCATION, 1);
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| 
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|     curl_multi_add_handle(cm, eh);
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|   }
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| 
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|   int still_running = 1;
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|   while (still_running > 0 && !(abort && *abort)) {
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|     curl_multi_wait(cm, nullptr, 0, 1000, nullptr);
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|     curl_multi_perform(cm, &still_running);
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|     download_stats.update(url, written);
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|   }
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| 
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|   CURLMsg *msg;
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|   int msgs_left = -1;
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|   int complete = 0;
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|   while ((msg = curl_multi_info_read(cm, &msgs_left)) && !(abort && *abort)) {
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|     if (msg->msg == CURLMSG_DONE) {
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|       if (msg->data.result == CURLE_OK) {
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|         long res_status = 0;
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|         curl_easy_getinfo(msg->easy_handle, CURLINFO_RESPONSE_CODE, &res_status);
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|         if (res_status == 206) {
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|           complete++;
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|         } else {
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|           rWarning("Download failed: http error code: %d", res_status);
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|         }
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|       } else {
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|         rWarning("Download failed: connection failure: %d",  msg->data.result);
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|       }
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|     }
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|   }
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| 
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|   bool success = complete == parts;
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|   download_stats.update(url, written, success);
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|   download_stats.remove(url);
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| 
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|   for (const auto &[e, w] : writers) {
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|     curl_multi_remove_handle(cm, e);
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|     curl_easy_cleanup(e);
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|   }
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|   curl_multi_cleanup(cm);
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| 
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|   return success;
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| }
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| 
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| std::string httpGet(const std::string &url, size_t chunk_size, std::atomic<bool> *abort) {
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|   size_t size = getRemoteFileSize(url, abort);
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|   if (size == 0) return {};
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| 
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|   std::string result(size, '\0');
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|   return httpDownload(url, result, chunk_size, size, abort) ? result : "";
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| }
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| 
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| bool httpDownload(const std::string &url, const std::string &file, size_t chunk_size, std::atomic<bool> *abort) {
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|   size_t size = getRemoteFileSize(url, abort);
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|   if (size == 0) return false;
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| 
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|   std::ofstream of(file, std::ios::binary | std::ios::out);
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|   of.seekp(size - 1).write("\0", 1);
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|   return httpDownload(url, of, chunk_size, size, abort);
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| }
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| 
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| std::string decompressBZ2(const std::string &in, std::atomic<bool> *abort) {
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|   return decompressBZ2((std::byte *)in.data(), in.size(), abort);
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| }
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| 
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| std::string decompressBZ2(const std::byte *in, size_t in_size, std::atomic<bool> *abort) {
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|   if (in_size == 0) return {};
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| 
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|   bz_stream strm = {};
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|   int bzerror = BZ2_bzDecompressInit(&strm, 0, 0);
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|   assert(bzerror == BZ_OK);
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| 
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|   strm.next_in = (char *)in;
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|   strm.avail_in = in_size;
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|   std::string out(in_size * 5, '\0');
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|   do {
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|     strm.next_out = (char *)(&out[strm.total_out_lo32]);
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|     strm.avail_out = out.size() - strm.total_out_lo32;
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| 
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|     const char *prev_write_pos = strm.next_out;
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|     bzerror = BZ2_bzDecompress(&strm);
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|     if (bzerror == BZ_OK && prev_write_pos == strm.next_out) {
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|       // content is corrupt
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|       bzerror = BZ_STREAM_END;
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|       rWarning("decompressBZ2 error : content is corrupt");
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|       break;
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|     }
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| 
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|     if (bzerror == BZ_OK && strm.avail_in > 0 && strm.avail_out == 0) {
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|       out.resize(out.size() * 2);
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|     }
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|   } while (bzerror == BZ_OK && !(abort && *abort));
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| 
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|   BZ2_bzDecompressEnd(&strm);
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|   if (bzerror == BZ_STREAM_END && !(abort && *abort)) {
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|     out.resize(strm.total_out_lo32);
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|     return out;
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|   }
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|   return {};
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| }
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| 
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| void precise_nano_sleep(long sleep_ns) {
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|   const long estimate_ns = 1 * 1e6;  // 1ms
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|   struct timespec req = {.tv_nsec = estimate_ns};
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|   uint64_t start_sleep = nanos_since_boot();
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|   while (sleep_ns > estimate_ns) {
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|     nanosleep(&req, nullptr);
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|     uint64_t end_sleep = nanos_since_boot();
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|     sleep_ns -= (end_sleep - start_sleep);
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|     start_sleep = end_sleep;
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|   }
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|   // spin wait
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|   if (sleep_ns > 0) {
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|     while ((nanos_since_boot() - start_sleep) <= sleep_ns) {
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|       std::this_thread::yield();
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|     }
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|   }
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| }
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| 
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| std::string sha256(const std::string &str) {
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|   unsigned char hash[SHA256_DIGEST_LENGTH];
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|   SHA256_CTX sha256;
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|   SHA256_Init(&sha256);
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|   SHA256_Update(&sha256, str.c_str(), str.size());
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|   SHA256_Final(hash, &sha256);
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|   return util::hexdump(hash, SHA256_DIGEST_LENGTH);
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| }
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| 
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