SAIFIINDUSTRIES's picture
Add Batch 5 with 10 repos
387c3d6 verified
Raw History Blame Contribute Delete
36.3 kB
# 文件名: py代码/ethernet_worker.py
# (已修复:1. 添加了缺失的 send_video_frame 槽。 2. 移除了 send_audio_chunk 中的锁。)
import socket
import threading
import os
import time
import struct
import zlib
import random
from PyQt6.QtCore import QObject, pyqtSignal, pyqtSlot
from PyQt6.QtGui import QImage
CHUNK_SIZE = 1024 # 每个数据包的最大有效负载大小 (字节)
PREFIX_TEXT = b'\x00'
PREFIX_VIDEO = b'\x01'
PREFIX_FILE_DATA = b'\x02'
PREFIX_AUDIO_DATA = b'\x03'
PREFIX_FILE_INFO = b'\x0F'
PREFIX_AUDIO_STREAM = b'\x04'
PREFIX_ACK = b'\xAA'
HEADER_FORMAT = '!BI'
HEADER_SIZE = struct.calcsize(HEADER_FORMAT)
CRC_SIZE = struct.calcsize('!I')
# --- [!! 停等协议 (Stop-and-Wait) 常量 !!] ---
RETRY_COUNT = 128
ACK_TIMEOUT = 0.01
# --- [!! SR 滑动窗口 (Selective Repeat) 新增常量 !!] ---
WINDOW_SIZE = 4
RELIABLE_TIMEOUT = 0.01
SR_MAX_RETRIES = 15
# --- [!! 發送速率 (Pacer) 新增常量 !!] ---
MIN_SEND_INTERVAL = 0.00 # 每個數據包的最小發送間隔 (秒)
# --- [!! 結束新增 !!] ---
class EthernetWorker(QObject):
"""
(文档已更新)
- 增加了对"隐形"P2P LAN模式的支持。
- 为文件/音频传输实现了 SR (Selective Repeat) 滑动窗口协议。
- 為 SR 增加了最大重傳次數限制。
- 為所有數據包添加了最小發送間隔 (Pacer)。
"""
# (信号保持不变)
started = pyqtSignal()
stopped = pyqtSignal()
log_received = pyqtSignal(str)
video_frame_ready = pyqtSignal(QImage)
error_occurred = pyqtSignal(str)
finished = pyqtSignal()
file_received = pyqtSignal(str, bytes)
audio_chunk_received = pyqtSignal(bytes)
file_send_progress = pyqtSignal(int, int, float)
file_receive_progress = pyqtSignal(int, int, float)
file_receive_started = pyqtSignal(str, int)
file_transfer_finished = pyqtSignal(bool, str)
def __init__(self):
super().__init__()
self.sock = None
self._running = False
self.fpga_addr = None
self._recv_thread = None
self._lock = threading.Lock()
self.is_receiving_file = False
self.current_file_info = {}
self.file_buffer = bytearray()
self.enable_file_reception = False
self.is_lan_mode = False
self.ack_event = threading.Event()
self.last_received_ack_seq = -1
# --- [!! 新增:视频组包缓存 !!] ---
# 结构: { frame_id: { 'chunks': {idx: data}, 'total': count, 'timestamp': time } }
self.video_reassembly_buffer = {}
# 用于发送端的帧计数器
self.tx_video_frame_id = 0
# -------------------------------
# --- 接收方状态 (SR 修改) ---
self.recv_base = 0 # 接收窗口基址
self.recv_buffer = {} # {seq_num: payload} 存储乱序到达的包
self.recv_acked = set() # 已确认的序列号集合
# --- SR (Selective Repeat) 发送方状态 ---
self.send_base = 0
self.next_seq_num = 0
self.send_buffer = {} # {seq_num: packet_bytes}
self.send_timers = {} # {seq_num: Timer对象}
self.send_retry_count = {} # {seq_num: 重传次数}
self.sr_lock = threading.Lock()
self.window_space_cv = threading.Condition(self.sr_lock)
self.sr_transfer_active = False
self.pacer_lock = threading.Lock()
self.last_send_time = 0
@pyqtSlot(bool)
def set_lan_mode(self, enabled):
# (此方法保持不变)
self.is_lan_mode = enabled
# if enabled:
# self.log_received.emit(f"--- [!] 局域网P2P模式已激活 (目标: {LAN_TARGET_IP}:{LAN_PORT}) ---")
# else:
# self.log_received.emit("--- [!] 局域网P2P模式已停用 (返回FPGA模式) ---")
def start_listening(self, listen_ip, listen_port, fpga_ip, fpga_port):
# (此方法保持不变)
with self._lock:
if self._recv_thread and self._recv_thread.is_alive():
self.log_received.emit("[警告] 监听已在运行,请先停止。")
return
local_listen_ip = listen_ip
local_listen_port = listen_port
self.fpga_addr = (fpga_ip, fpga_port)
self.recv_base = 0
self.recv_buffer.clear()
self.recv_acked.clear()
self._running = True
self._recv_thread = threading.Thread(
target = self._recv_loop, args = (local_listen_ip, local_listen_port), daemon = True
)
self._recv_thread.start()
self.started.emit()
# self.log_received.emit(f"UDP 正在监听 {local_listen_ip}:{local_listen_port}...")
def _recv_loop(self, listen_ip, listen_port):
"""
SR 接收逻辑
"""
try:
self.sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
self.sock.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
self.sock.settimeout(0.5)
try:
self.sock.bind((listen_ip, listen_port))
except Exception as e:
self.error_occurred.emit(f"UDP 绑定失败: {e} (地址: {listen_ip}:{listen_port})")
return
while self._running:
try:
data, addr = self.sock.recvfrom(65536)
if not data or len(data) < (HEADER_SIZE + CRC_SIZE):
continue
# CRC 校验
received_crc = struct.unpack('!I', data[-CRC_SIZE:])[0]
data_without_crc = data[:-CRC_SIZE]
calculated_crc = zlib.crc32(data_without_crc)
if received_crc != calculated_crc:
self.log_received.emit(f"[UDP 错误] 收到 CRC 校验失败的包,已丢弃")
continue
# 解析包头
prefix_byte, seq_num = struct.unpack(HEADER_FORMAT, data_without_crc[:HEADER_SIZE])
prefix = bytes([prefix_byte])
payload = data_without_crc[HEADER_SIZE:]
# ============================================
# [!! 文本命令完全独立处理 !!]
# ============================================
if prefix == PREFIX_TEXT:
try:
text_message = payload.decode('utf-8').strip()
if text_message:
self.log_received.emit(f"[UDP 消息]: {text_message}")
except Exception:
self.log_received.emit(f"[UDP 警告] 收到无法解码的文本包")
self._send_ack(seq_num, addr)
continue
# ============================================
# [!! 🔥 关键修复:提前检测并处理文件头 !!]
# ============================================
if prefix == PREFIX_FILE_INFO:
if not self.enable_file_reception:
self._send_ack(seq_num, addr)
continue
try:
info_str = payload.decode('utf-8')
filename, filesize_str = info_str.split(':', 1)
filesize = int(filesize_str)
# === 立即重置接收窗口(在任何窗口检查之前) ===
self.recv_base = 0
self.recv_buffer.clear()
self.recv_acked.clear()
# 标记为已确认
self.recv_acked.add(0) # 假设文件头总是 seq_num=0
# 重置文件接收状态
self.current_file_info = {
"name": filename,
"size": filesize,
"start_time": time.time()
}
self.file_buffer.clear()
self.is_receiving_file = True
# 发射接收开始信号
self.file_receive_started.emit(filename, filesize)
self.file_receive_progress.emit(0, filesize, 0.0)
self.log_received.emit(
f"[UDP 文件] (SEQ={seq_num}) 开始接收: {filename} ({filesize} 字节)"
)
# 滑动窗口到下一个位置
self.recv_base = 1
except Exception as e:
self.log_received.emit(f"[UDP 错误] 收到损坏的文件头: {e}")
self.is_receiving_file = False
# 发送 ACK
self._send_ack(seq_num, addr)
continue # 跳过后续 SR 处理
# ============================================
# ACK 包处理
if prefix == PREFIX_ACK:
self.last_received_ack_seq = seq_num
self.ack_event.set()
with self.sr_lock:
if seq_num in self.send_buffer:
self._sr_stop_timer(seq_num)
self.send_buffer.pop(seq_num, None)
self.send_retry_count.pop(seq_num, None)
if seq_num == self.send_base:
while self.send_base < self.next_seq_num and self.send_base not in self.send_buffer:
self.send_base += 1
self.window_space_cv.notify_all()
continue
# 视频包处理 (分片重组)
if prefix == PREFIX_VIDEO:
try:
vid_fid = data_without_crc[1]
vid_idx = data_without_crc[2]
vid_total = data_without_crc[3]
vid_payload = data_without_crc[4:]
if vid_fid not in self.video_reassembly_buffer:
self.video_reassembly_buffer[vid_fid] = {
'chunks': {},
'total': vid_total,
'ts': time.time()
}
self.video_reassembly_buffer[vid_fid]['chunks'][vid_idx] = vid_payload
current_frame = self.video_reassembly_buffer[vid_fid]
if len(current_frame['chunks']) == vid_total:
full_jpeg = bytearray()
for k in range(vid_total):
if k in current_frame['chunks']:
full_jpeg.extend(current_frame['chunks'][k])
image = QImage()
if image.loadFromData(full_jpeg, "WEBP"):
self.video_frame_ready.emit(image)
del self.video_reassembly_buffer[vid_fid]
# 清理过期帧
now = time.time()
expired_ids = [k for k, v in self.video_reassembly_buffer.items()
if now - v['ts'] > 1.0]
for k in expired_ids:
del self.video_reassembly_buffer[k]
except Exception as e:
pass
continue
# 音频流处理 (不可靠)
if prefix == PREFIX_AUDIO_STREAM:
self.audio_chunk_received.emit(payload)
continue
# ============================================
# SR 窗口逻辑 (仅用于文件数据传输)
# ============================================
# 检查是否为旧包
if seq_num < self.recv_base:
# 重发 ACK (可能是重传包)
self._send_ack(seq_num, addr)
continue
# 检查是否超出窗口
if seq_num >= self.recv_base + WINDOW_SIZE:
self.log_received.emit(
f"[UDP SR] 收到超出窗口的包 {seq_num} "
f"(窗口 [{self.recv_base}, {self.recv_base + WINDOW_SIZE - 1}]), 已丢弃"
)
continue
# 发送 ACK
self._send_ack(seq_num, addr)
# 检查是否已确认
if seq_num in self.recv_acked:
continue
# 缓存数据包
self.recv_buffer[seq_num] = (prefix, payload)
self.recv_acked.add(seq_num)
# 滑动窗口 - 处理所有连续的已确认包
while self.recv_base in self.recv_acked:
recv_prefix, recv_payload = self.recv_buffer.pop(self.recv_base)
self.recv_acked.remove(self.recv_base)
# 处理数据包
self._process_received_packet(recv_prefix, self.recv_base, recv_payload, addr)
# 窗口滑动
self.recv_base += 1
except socket.timeout:
continue
except Exception as e:
if self._running:
self.error_occurred.emit(f"UDP 接收错误: {e}")
break
finally:
try:
if self.sock:
self.sock.close()
except Exception:
pass
self.sock = None
self._running = False
self.stopped.emit()
self.finished.emit()
self.log_received.emit("UDP 监听已停止")
def _process_received_packet(self, prefix, seq_num, payload, addr):
"""
处理已确认接收的数据包
注意: PREFIX_TEXT 不会到达这里,已在 _recv_loop 中处理
"""
if prefix == PREFIX_FILE_INFO:
if not self.enable_file_reception:
return
try:
info_str = payload.decode('utf-8')
filename, filesize_str = info_str.split(':', 1)
filesize = int(filesize_str)
# === [!! 关键修复: 重置接收窗口 !!] ===
self.recv_base = 0
self.recv_buffer.clear()
self.recv_acked.clear()
# === [!! 修复结束 !!] ===
self.current_file_info = {
"name": filename,
"size": filesize,
"start_time": time.time()
}
self.file_buffer.clear()
self.is_receiving_file = True
# 发射接收开始信号
self.file_receive_started.emit(filename, filesize)
self.file_receive_progress.emit(0, filesize, 0.0)
self.log_received.emit(
f"[UDP 文件] (SEQ={seq_num}) 开始接收: {filename} ({filesize} 字节)"
)
except Exception as e:
self.log_received.emit(f"[UDP 错误] 收到损坏的文件头: {e}")
self.is_receiving_file = False
elif prefix == PREFIX_FILE_DATA:
if self.is_receiving_file:
self.file_buffer.extend(payload)
# 发射接收进度信号
total_size = self.current_file_info.get("size", -1)
received_bytes = len(self.file_buffer)
# 计算实时速率
start_time = self.current_file_info.get("start_time", time.time())
elapsed = time.time() - start_time
if elapsed > 0:
speed_mbps = (received_bytes * 8) / (elapsed * 1024 * 1024)
else:
speed_mbps = 0.0
self.file_receive_progress.emit(received_bytes, total_size, speed_mbps)
if received_bytes >= total_size:
file_data_bytes = self.file_buffer[:total_size]
filename = self.current_file_info.get("name", "unknown_file")
self.log_received.emit(f"[UDP 文件] 接收完毕: {filename}")
self.file_transfer_finished.emit(True, "接收完成")
self.file_received.emit(filename, bytes(file_data_bytes))
self.is_receiving_file = False
self.file_buffer.clear()
self.current_file_info.clear()
# === [!! 可选: 这里也可以重置,作为双重保险 !!] ===
self.recv_base = 0
self.recv_buffer.clear()
self.recv_acked.clear()
# === [!! 修复结束 !!] ===
elif prefix == PREFIX_AUDIO_DATA:
self.log_received.emit(f"[UDP 消息] 收到一个音频包 (SEQ={seq_num}) (暂不处理)")
elif prefix == PREFIX_TEXT:
# 理论上不会到这里,因为已在 _recv_loop 中处理
try:
text_message = payload.decode('utf-8').strip()
if text_message:
self.log_received.emit(f"[UDP 消息]: {text_message}")
except Exception:
pass
else:
self.log_received.emit(f"[UDP 警告] 收到未知前缀的包: 0x{prefix.hex()}")
def stop_listening(self):
# (保持不变)
self._running = False
self.log_received.emit("停止请求已发送 -> 正在等待接收线程退出...")
def set_file_reception_enabled(self, enabled: bool):
# (保持不变)
self.enable_file_reception = enabled
if enabled:
self.log_received.emit("文件接收已启用")
else:
self.log_received.emit("文件接收已禁用")
if self.is_receiving_file:
self.is_receiving_file = False
self.file_buffer.clear()
self.current_file_info.clear()
self.log_received.emit("[警告] 文件接收已中止")
def _pack_data(self, prefix: bytes, seq_num: int, payload: bytes) -> bytes:
# (保持不变)
header = struct.pack(HEADER_FORMAT, prefix[0], seq_num)
data_without_crc = header + payload
crc = zlib.crc32(data_without_crc)
return data_without_crc + struct.pack('!I', crc)
def _send_udp_payload(self, raw_bytes: bytes) -> bool:
"""
[!! 重大修改: 添加 Pacer (速率控制器) !!]
這是所有數據包的底層發送函數。
ACK 包 (send_ack) 不會調用此函數。
"""
addr = self.fpga_addr
if not addr:
self.error_occurred.emit("发送失败: 目标地址未设置")
return False
with self.pacer_lock:
now = time.time()
elapsed = now - self.last_send_time
if elapsed < MIN_SEND_INTERVAL:
time.sleep(MIN_SEND_INTERVAL - elapsed)
self.last_send_time = time.time()
try:
if self.sock:
self.sock.sendto(raw_bytes, addr)
return True
else:
with socket.socket(socket.AF_INET, socket.SOCK_DGRAM) as tmp_sock:
tmp_sock.sendto(raw_bytes, addr)
return True
except Exception as e:
self.error_occurred.emit(f"UDP 发送失败: {e}")
return False
def _send_ack(self, seq_num_to_ack: int, target_addr: tuple):
# (此方法保持不变)
ack_packet = self._pack_data(PREFIX_ACK, seq_num_to_ack, b'')
try:
if self.sock:
self.sock.sendto(ack_packet, target_addr)
except Exception as e:
self.log_received.emit(f"发送 ACK {seq_num_to_ack} 失败: {e}")
# --- (SR 辅助函数: _sr_start_timer, _sr_stop_timer, _sr_handle_timeout, _send_sr_stream 保持不变) ---
def _sr_start_timer(self, seq_num):
self._sr_stop_timer(seq_num)
timer = threading.Timer(RELIABLE_TIMEOUT, self._sr_handle_timeout, args = (seq_num,))
timer.daemon = True
self.send_timers[seq_num] = timer
timer.start()
def _sr_stop_timer(self, seq_num):
"""停止特定序列号的计时器"""
if seq_num in self.send_timers:
self.send_timers[seq_num].cancel()
self.send_timers.pop(seq_num, None)
def _sr_handle_timeout(self, seq_num):
"""处理特定包的超时"""
with self.sr_lock:
if not self.sr_transfer_active:
return
if seq_num not in self.send_buffer:
return
retry_count = self.send_retry_count.get(seq_num, 0) + 1
self.send_retry_count[seq_num] = retry_count
if retry_count >= SR_MAX_RETRIES:
self.error_occurred.emit(
f"[UDP SR 错误] 包 {seq_num} 达到最大重传次数 ({SR_MAX_RETRIES})。中止传输。")
self.sr_transfer_active = False
for sn in list(self.send_timers.keys()):
self._sr_stop_timer(sn)
self.window_space_cv.notify_all()
return
# self.log_received.emit(
# f"[UDP SR 重传] 包 {seq_num} 超时! ({retry_count}/{SR_MAX_RETRIES}) 重传")
packet = self.send_buffer.get(seq_num)
if packet:
self._send_udp_payload(packet)
self._sr_start_timer(seq_num)
def _send_sr_stream(self, prefix: bytes, start_seq: int, chunk_iterator) -> bool:
with self.sr_lock:
self.send_base = start_seq
self.next_seq_num = start_seq
self.send_buffer.clear()
self.send_retry_count.clear()
for seq_num in list(self.send_timers.keys()):
self._sr_stop_timer(seq_num)
self.sr_transfer_active = True
try:
chunk_cache = {}
chunk_gen = iter(chunk_iterator)
current_packet_index = 0
all_chunks_loaded = False
while not all_chunks_loaded or self.send_base < self.next_seq_num:
with self.sr_lock:
if not self._running:
self.error_occurred.emit("SR 发送中止 (1)")
return False
if not self.sr_transfer_active:
self.error_occurred.emit("SR 发送中止 (因最大重传)")
return False
while (self.next_seq_num - self.send_base) < WINDOW_SIZE and not all_chunks_loaded:
try:
chunk = next(chunk_gen)
except StopIteration:
all_chunks_loaded = True
break
current_seq = start_seq + current_packet_index
chunk_cache[current_seq] = chunk
packet = self._pack_data(prefix, current_seq, chunk)
self.send_buffer[current_seq] = packet
self.send_retry_count[current_seq] = 0
self._send_udp_payload(packet)
self._sr_start_timer(current_seq)
self.next_seq_num += 1
current_packet_index += 1
with self.sr_lock:
if not self._running:
self.error_occurred.emit("SR 发送中止 (2)")
return False
if not self.sr_transfer_active:
self.error_occurred.emit("SR 发送中止 (因最大重传)")
return False
if (self.next_seq_num - self.send_base) >= WINDOW_SIZE and not all_chunks_loaded:
self.window_space_cv.wait(RELIABLE_TIMEOUT * 2)
elif all_chunks_loaded and self.send_base < self.next_seq_num:
self.window_space_cv.wait(RELIABLE_TIMEOUT * 2)
acked_keys = [k for k in chunk_cache if k < self.send_base]
for k in acked_keys:
chunk_cache.pop(k, None)
self.log_received.emit(f"-> [UDP SR 流] (Prefix 0x{prefix.hex()}) 发送完成。")
return True
except Exception as e:
self.error_occurred.emit(f"SR 流发送失败: {e}")
return False
finally:
with self.sr_lock:
for seq_num in list(self.send_timers.keys()):
self._sr_stop_timer(seq_num)
self.send_buffer.clear()
self.send_retry_count.clear()
self.sr_transfer_active = False
def _send_reliable_payload(self, prefix: bytes, seq_num: int, payload: bytes) -> bool:
# (此方法保持不变)
packet = self._pack_data(prefix, seq_num, payload)
for i in range(RETRY_COUNT):
self.ack_event.clear()
self.last_received_ack_seq = -1
if not self._send_udp_payload(packet):
self.error_occurred.emit("UDP 套接字发送失败,中止重试")
return False
if self.ack_event.wait(ACK_TIMEOUT):
if self.last_received_ack_seq == seq_num:
return True
else:
self.log_received.emit(
f"[UDP 警告] 收到错误 ACK (Seq={self.last_received_ack_seq}, 期望={seq_num})")
self.log_received.emit(
f"[UDP 重试] 包 {seq_num} (Prefix 0x{prefix.hex()}) 未收到 ACK ({i + 1}/{RETRY_COUNT})")
self.error_occurred.emit(f"包 {seq_num} (Prefix 0x{prefix.hex()}) 发送失败 {RETRY_COUNT} 次,已放弃")
return False
def _send_unreliable_payload(self, prefix: bytes, payload: bytes) -> bool:
"""
(此方法保持不变, Pacer 將在 _send_udp_payload 中自動應用)
"""
packet = self._pack_data(prefix, 0, payload)
return self._send_udp_payload(packet)
def send_command(self, cmd_str: str):
# (保持不变 - 停等协议)
with self._lock:
seq_num = 0
payload = cmd_str.encode('utf-8')
self.log_received.emit(f"-> [UDP发送 文本]: {cmd_str} (SEQ={seq_num})")
success = self._send_reliable_payload(PREFIX_TEXT, seq_num, payload)
if success:
self.log_received.emit(f"-> [UDP发送 文本]: {cmd_str} 完成,序列号已重置")
else:
self.log_received.emit(f"-> [UDP发送 文本]: {cmd_str} 失败")
def send_file_udp(self, file_path: str):
"""
[!! SR !!]
1. 使用 "停等" (_send_reliable_payload) 发送文件头 (SEQ=0)
2. 使用 "SR" (_send_sr_stream) 发送文件数据 (SEQ=1...N)
添加了进度信号发射
"""
with self._lock:
if not self.fpga_addr:
self.error_occurred.emit("发送失败: 目标地址未设置")
self.file_transfer_finished.emit(False, "目标地址未设置")
return
try:
file_size = os.path.getsize(file_path)
filename = os.path.basename(file_path)
self.log_received.emit(f"-> [UDP发送 文件]: {filename} ({file_size} 字节)")
start_time = time.time()
# 发送前发射初始进度
self.file_send_progress.emit(0, file_size, 0.0)
# --- 1. 发送文件头 (SEQ=0, 停等) ---
seq_num = 0
info_str = f"{filename}:{file_size}"
info_payload = info_str.encode('utf-8')
self.log_received.emit(f"-> [UDP发送 文件头] (SEQ={seq_num})")
if not self._send_reliable_payload(PREFIX_FILE_INFO, seq_num, info_payload):
self.error_occurred.emit("文件头发送失败,未收到 ACK")
self.file_transfer_finished.emit(False, "文件头发送失败")
return
self.log_received.emit(f"-> [UDP发送 文件头] 完成")
# --- 2. 发送文件数据 (SEQ=1...N, SR) 带进度 ---
sent_bytes = 0
def file_chunk_generator_with_progress(f):
nonlocal sent_bytes
while True:
chunk = f.read(CHUNK_SIZE)
if not chunk:
break
sent_bytes += len(chunk)
# 计算实时速率
elapsed = time.time() - start_time
if elapsed > 0:
speed_mbps = (sent_bytes * 8) / (elapsed * 1024 * 1024)
else:
speed_mbps = 0.0
# 发射进度信号
self.file_send_progress.emit(sent_bytes, file_size, speed_mbps)
yield chunk
with open(file_path, 'rb') as f:
start_seq_num = 1
self.log_received.emit(f"-> [UDP SR 发送] 文件数据 (从 SEQ={start_seq_num} 开始)...")
if not self._send_sr_stream(PREFIX_FILE_DATA, start_seq_num,
file_chunk_generator_with_progress(f)):
self.error_occurred.emit(f"文件数据块发送失败 (SR)")
self.file_transfer_finished.emit(False, "数据发送失败")
return
end_time = time.time()
elapsed = end_time - start_time
speed_mbps = (file_size * 8) / (elapsed * 1024 * 1024) if elapsed > 0 else 0
# 最终进度
self.file_send_progress.emit(file_size, file_size, speed_mbps)
self.file_transfer_finished.emit(True, "发送完成")
self.log_received.emit(
f"-> [UDP发送 文件]: {filename} 完成, "
f"耗时: {elapsed:.2f} 秒, "
f"速度: {speed_mbps:.2f} Mbps ({file_size} 字节)"
)
except FileNotFoundError:
self.error_occurred.emit(f"文件未找到: {file_path}")
self.file_transfer_finished.emit(False, "文件未找到")
except Exception as e:
self.error_occurred.emit(f"文件发送失败: {e}")
self.file_transfer_finished.emit(False, str(e))
def send_audio_udp(self, audio_bytes: bytes):
"""
[!! SR !!]
1. 使用 "SR" (_send_sr_stream) 发送所有音频数据块 (SEQ=0...N)
"""
with self._lock:
if not self.fpga_addr:
self.error_occurred.emit("发送失败: 目标地址未设置")
return
data_size = len(audio_bytes)
self.log_received.emit(f"-> [UDP SR 发送 音频]: {data_size} 字节至 {self.fpga_addr}")
try:
def audio_chunk_generator(data, size):
idx = 0
while idx < len(data):
yield data[idx: idx + size]
idx += size
start_seq_num = 0
start_time = time.time()
success = self._send_sr_stream(PREFIX_AUDIO_DATA, start_seq_num,
audio_chunk_generator(audio_bytes, CHUNK_SIZE))
end_time = time.time()
if not success:
self.error_occurred.emit("音频发送中断 (SR)")
return
elapsed = end_time - start_time
speed_mbps = (data_size * 8) / (elapsed * 1024 * 1024) if elapsed > 0 else 0
self.log_received.emit(
f"-> [UDP SR 发送 音频]: 完成, "
f"耗时: {elapsed:.2f} 秒, "
f"速度: {speed_mbps:.2f} Mbps ({data_size} 字节)"
)
except Exception as e:
self.error_occurred.emit(f"音频发送失败: {e}")
@pyqtSlot(bytes)
def send_audio_chunk(self, audio_data: bytes):
"""
(不可靠的实时流发送)
"""
with self._lock:
if not self.fpga_addr:
return
if not self._send_unreliable_payload(PREFIX_AUDIO_STREAM, audio_data):
pass
# # --- [!! 修复结束 2 !!] ---
#
# --- [!! 关键修复 1 (Bug 214a27) !!] ---
# @pyqtSlot(bytes)
# def send_video_frame(self, jpeg_data: bytes):
# """
# [公共槽] 发送一个实时视频帧 (不可靠)
# (不使用 self._lock)
# """
# if not self.fpga_addr:
# return
#
# # # 使用 PREFIX_VIDEO (0x01),这是为视频保留的
# # if not self._send_unreliable_payload(PREFIX_VIDEO, jpeg_data):
# # pass # 丢包, 忽略
@pyqtSlot(bytes)
def send_video_frame(self, jpeg_data: bytes):
"""
[修改版] 视频分包发送逻辑
协议头 (4 bytes): [0x01 (Prefix)] [Frame_ID] [Packet_Idx] [Total_Packets]
"""
if not self.fpga_addr:
return
# FPGA 限制 1400,我们设定 Payload 为 1024,留足余量
MAX_PAYLOAD = 1024
total_len = len(jpeg_data)
# 计算总包数 (向上取整)
total_packets = (total_len + MAX_PAYLOAD - 1) // MAX_PAYLOAD
# 限制最大包数 (因为包头里 Total_Packets 只有 1 byte,最大 255)
if total_packets > 255:
print(f"[丢弃] 视频帧过大: {total_len} bytes (需要 {total_packets} 包 > 255)")
return
# 帧 ID 自增 (0-255 循环)
self.tx_video_frame_id = (self.tx_video_frame_id + 1) % 256
fid = self.tx_video_frame_id
# 循环发送每个分片
for i in range(total_packets):
start = i * MAX_PAYLOAD
end = min(start + MAX_PAYLOAD, total_len)
chunk = jpeg_data[start:end]
# 构建包头: Prefix(1) + FID(1) + Index(1) + Total(1)
# 1. 构建包内容: Prefix(1) + FID(1) + Index(1) + Total(1) + Data(...)
# 注意:这里 Prefix 是 0x01 (PREFIX_VIDEO)
header = struct.pack('!BBBB', 0x01, fid, i, total_packets)
data_without_crc = header + chunk
# --- [!! 核心修复 !!] ---
# 2. 计算 CRC32
crc = zlib.crc32(data_without_crc)
# 3. 拼接完整的带 CRC 的包
final_packet = data_without_crc + struct.pack('!I', crc)
# 这里的 send_udp_payload 会处理 socket 发送
# 视频允许丢包,所以我们不使用可靠重传 (Stop-and-Wait/SR)
# 4. 发送
self._send_udp_payload(final_packet)
# [重要] 微小延时,防止瞬间突发流量淹没 FPGA 的 2Mbps 带宽
# 1024 bytes * 8 bits = 8192 bits.
# 2Mbps = 2,000,000 bits/s.
# 理论最小间隔 ≈ 0.004s。设置为 0.002s 比较激进但流畅。
time.sleep(0.002)