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https://github.com/meshcore-dev/MeshCore.git
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The serial command buffers must stay NUL-terminated within their bounds: if they ever aren't, strlen() can return >= sizeof(command) and the read loop would index past the buffer. Additionally, a full buffer now becomes a completed line (end-of-line marker placed inside the buffer, NUL terminator kept) instead of overwriting the terminator and silently corrupting the buffer for the next pass. Applies to the serial CLI readers of the repeater, room server, sensor and secure chat examples, and to the CLI rescue reader of the companion example.
216 lines
5.6 KiB
C++
216 lines
5.6 KiB
C++
#include <Arduino.h> // needed for PlatformIO
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#include <Mesh.h>
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#include "MyMesh.h"
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#ifdef DISPLAY_CLASS
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#include "UITask.h"
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static UITask ui_task(board, display);
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#endif
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#ifdef ETHERNET_ENABLED
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#define ETHERNET_CLI_BANNER "MeshCore Repeater CLI"
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#include <helpers/nrf52/EthernetCLI.h>
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#endif
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StdRNG fast_rng;
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SimpleMeshTables tables;
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MyMesh the_mesh(board, radio_driver, *new ArduinoMillis(), fast_rng, rtc_clock, tables);
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void halt() {
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while (1) ;
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}
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static char command[160];
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#ifdef ETHERNET_ENABLED
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static char ethernet_command[160];
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#endif
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// For power saving
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unsigned long POWERSAVING_FIRSTSLEEP_SECS = 120; // The first sleep (if enabled) from boot
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#if defined(PIN_USER_BTN) && defined(_SEEED_SENSECAP_SOLAR_H_)
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static unsigned long userBtnDownAt = 0;
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#define USER_BTN_HOLD_OFF_MILLIS 1500
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#endif
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void setup() {
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Serial.begin(115200);
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delay(1000);
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board.begin();
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#ifdef HAS_EXTERNAL_WATCHDOG
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external_watchdog.begin();
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#endif
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#if defined(MESH_DEBUG) && defined(NRF52_PLATFORM)
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// give some extra time for serial to settle so
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// boot debug messages can be seen on terminal
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delay(5000);
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#endif
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#ifdef DISPLAY_CLASS
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if (display.begin()) {
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display.startFrame();
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display.setCursor(0, 0);
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display.print("Please wait...");
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display.endFrame();
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}
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#endif
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if (!radio_init()) {
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MESH_DEBUG_PRINTLN("Radio init failed!");
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halt();
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}
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fast_rng.begin(radio_driver.getRngSeed());
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FILESYSTEM* fs;
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#if defined(NRF52_PLATFORM) || defined(STM32_PLATFORM)
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InternalFS.begin();
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fs = &InternalFS;
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IdentityStore store(InternalFS, "");
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#elif defined(ESP32)
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SPIFFS.begin(true);
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fs = &SPIFFS;
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IdentityStore store(SPIFFS, "/identity");
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#elif defined(RP2040_PLATFORM)
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LittleFS.begin();
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fs = &LittleFS;
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IdentityStore store(LittleFS, "/identity");
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store.begin();
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#else
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#error "need to define filesystem"
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#endif
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if (!store.load("_main", the_mesh.self_id)) {
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MESH_DEBUG_PRINTLN("Generating new keypair");
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the_mesh.self_id = radio_new_identity(); // create new random identity
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int count = 0;
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while (count < 10 && (the_mesh.self_id.pub_key[0] == 0x00 || the_mesh.self_id.pub_key[0] == 0xFF)) { // reserved id hashes
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the_mesh.self_id = radio_new_identity(); count++;
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}
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store.save("_main", the_mesh.self_id);
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}
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Serial.print("Repeater ID: ");
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mesh::Utils::printHex(Serial, the_mesh.self_id.pub_key, PUB_KEY_SIZE); Serial.println();
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command[0] = 0;
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#ifdef ETHERNET_ENABLED
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ethernet_command[0] = 0;
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#endif
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sensors.begin();
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the_mesh.begin(fs);
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#ifdef DISPLAY_CLASS
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ui_task.begin(the_mesh.getNodePrefs(), FIRMWARE_BUILD_DATE, FIRMWARE_VERSION);
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#endif
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#ifdef ETHERNET_ENABLED
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ethernet_start_task();
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#endif
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// send out initial zero hop Advertisement to the mesh
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#if ENABLE_ADVERT_ON_BOOT == 1
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the_mesh.sendSelfAdvertisement(16000, false);
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#endif
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board.onBootComplete();
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}
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void loop() {
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// Handle Serial CLI
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int len = strlen(command);
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// `command` must stay NUL-terminated within its bounds. If it ever isn't,
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// strlen() above can return >= sizeof(command) and the loop below would then
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// index past the buffer, so clamp defensively.
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if (len >= (int)sizeof(command)) {
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command[0] = 0;
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len = 0;
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}
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while (Serial.available() && len < sizeof(command)-1) {
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char c = Serial.read();
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if (c != '\n') {
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command[len++] = c;
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command[len] = 0;
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Serial.print(c);
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}
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if (c == '\r') break;
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}
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if (len == sizeof(command)-1) { // buffer full: treat as a completed line
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command[sizeof(command)-2] = '\r'; // place end-of-line marker inside the buffer
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command[sizeof(command)-1] = 0; // keep the buffer NUL-terminated
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}
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if (len > 0 && command[len - 1] == '\r') { // received complete line
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Serial.print('\n');
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command[len - 1] = 0; // replace newline with C string null terminator
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char reply[160];
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reply[0] = 0;
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#ifdef ETHERNET_ENABLED
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if (!ethernet_handle_command(command, reply)) {
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the_mesh.handleCommand(0, command, reply);
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}
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#else
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the_mesh.handleCommand(0, command, reply); // NOTE: there is no sender_timestamp via serial!
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#endif
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if (reply[0]) {
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Serial.print(" -> "); Serial.println(reply);
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}
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command[0] = 0; // reset command buffer
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}
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#ifdef ETHERNET_ENABLED
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ethernet_loop_maintain();
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if (ethernet_read_line(ethernet_command, sizeof(ethernet_command))) {
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char reply[160];
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reply[0] = 0;
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if (!ethernet_handle_command(ethernet_command, reply)) {
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the_mesh.handleCommand(0, ethernet_command, reply);
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}
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ethernet_send_reply(reply);
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ethernet_command[0] = 0;
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}
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#endif
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#if defined(PIN_USER_BTN) && defined(_SEEED_SENSECAP_SOLAR_H_) && !defined(DISPLAY_CLASS)
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// Hold the user button to power off the SenseCAP Solar repeater.
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int btnState = digitalRead(PIN_USER_BTN);
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if (btnState == LOW) {
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if (userBtnDownAt == 0) {
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userBtnDownAt = millis();
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} else if ((unsigned long)(millis() - userBtnDownAt) >= USER_BTN_HOLD_OFF_MILLIS) {
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Serial.println("Powering off...");
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board.powerOff(); // does not return
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}
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} else {
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userBtnDownAt = 0;
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}
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#endif
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the_mesh.loop();
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sensors.loop();
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#ifdef DISPLAY_CLASS
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ui_task.loop();
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#endif
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rtc_clock.tick();
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#ifdef HAS_EXTERNAL_WATCHDOG
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external_watchdog.loop();
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#endif
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if (the_mesh.getNodePrefs()->powersaving_enabled && !the_mesh.hasPendingWork()) {
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#if defined(NRF52_PLATFORM)
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board.sleep(0); // nrf ignores seconds param, sleeps whenever possible
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#else
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if (the_mesh.millisHasNowPassed(POWERSAVING_FIRSTSLEEP_SECS * 1000)) { // To check if it is time to sleep
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board.sleep(30); // Sleep. Wake up after a while or when receiving a LoRa packet
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}
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#endif
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}
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}
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