Picotcp memory usage benchmark (still beta testing)
Dependencies: PicoTCP lpc1768-picotcp-eth mbed-rtos mbed
This project represents a throughtput test for the EthernetInterface, based on the PicoTCP library.
The purpose of this is to be able to make a comparison of full speed (Rx,Tx and Rx+Tx) and memory
between the EthernetInterface based on the lwIP and the one based on PicoTCP .
The benchmark consists of three parts:
- we are sending 1 Megabyte from the board to host
- we are waiting for the host to send us 1 Megabyte of data
- on the last part we are using a TCP Echo Server to send and receive back 1 Megabyte of data
we send/receive 1024 packets of 1024 bytes each and we measure how many bits per second we transmit and receive.
The result:
TX+RX Throughput: 4194304 bytes in 3 seconds (10.457) Mbits/s
Memory report
Current free memory : 19148 bytes
Maximum free memory : 24716 bytes
Minimum free memory : 15476 bytes
Average free memory : 17376 bytes
The python script used
#!/usr/bin/python import sys, socket import random, string import select from time import time #ECHO_SERVER_ADDRESS = "10.20.30.139" ECHO_SERVER_ADDRESS = "192.168.100.12" ECHO_SERVER_PORT = 7 N_PACKETS = 1024 LEN_PACKET = 1024 TOT_BITS = (LEN_PACKET * N_PACKETS * 8) * 4. # TX bits + RX bits PACKET = ''.join(random.choice(string.ascii_uppercase+string.digits) for _ in range(LEN_PACKET)) MEGA = 1024 * 1024. UPDATE_STEP = (N_PACKETS/20) # Make the update step such as one step = 5% UPDATE_R_STEP = (N_PACKETS/20) #Make the update step such as one step = 1% s = socket.socket(socket.AF_INET, socket.SOCK_STREAM) s.connect((ECHO_SERVER_ADDRESS, ECHO_SERVER_PORT)) start = time() rx_total = 0 tx_total = 0 data = '' i = 0 lp = [] p = select.poll() while(True): # keeping this in for robustness testing, when the test will run for days #Stage I - sending data from host towards mbed board print "Started sending data...." while (i < N_PACKETS): p.register(s, select.POLLOUT) lp = p.poll(1) if (len(lp) > 0): s.sendall(PACKET) i+=1 if (i % UPDATE_STEP) == 0: print "sent %d/%d (%.2f%%)" % (i, N_PACKETS, float(i)/ float(N_PACKETS) * 100.) continue #Stage II - receving data from the mbed board print "Started receiving data...." while(len(data) < N_PACKETS * LEN_PACKET): p.register(s, select.POLLIN) lp = p.poll(1) if(len(lp) > 0): r = s.recv(LEN_PACKET) if (r != ''): data += r if (len(data) / LEN_PACKET) % UPDATE_R_STEP: print "recvd %d/%d (%.2f%%)" % (len(data)/LEN_PACKET, N_PACKETS, float(len(data))/ float(N_PACKETS * LEN_PACKET) * 100.) else: print "Error receiving !" sys.exit(1) #Stage III - echo between host and mbed board print "Started echoing data...." for i in range(N_PACKETS): if (i % UPDATE_STEP) == 0: print "%.2f%%" % (float(i)/float(N_PACKETS) * 100.) s.sendall(PACKET) data = s.recv(LEN_PACKET) if (len(data) != LEN_PACKET): print "Error echoing !" sys.exit(1) print "Test was finished!" break; t = time() - start s.close() print "TX+RX Throughput: %d bytes in %d seconds (%.3f)Mbits/s" % (TOT_BITS / 8, t, ((TOT_BITS / t) / MEGA))
This test is based on the following libraries
Import librarylpc1768-picotcp-eth
A PicoTCP driver for the lpc1768 mbed board
Import libraryPicoTCP
Free (GPLv2) TCP/IP stack developed by TASS Belgium
Import librarymbed-rtos
Official mbed Real Time Operating System based on the RTX implementation of the CMSIS-RTOS API open standard.
Click here to see the results for lwIP
main.cpp@6:e7d71e575d37, 2013-10-07 (annotated)
- Committer:
- tass
- Date:
- Mon Oct 07 10:43:36 2013 +0000
- Revision:
- 6:e7d71e575d37
- Parent:
- 5:7a73a14f5e85
Added new memory and stack measure mechanism.
Who changed what in which revision?
User | Revision | Line number | New contents of line |
---|---|---|---|
tass | 6:e7d71e575d37 | 1 | /* |
tass | 6:e7d71e575d37 | 2 | * To enable stack measurement go to pico_mbed.h and add |
tass | 6:e7d71e575d37 | 3 | * #define PICO_MEASURE_STACK |
tass | 6:e7d71e575d37 | 4 | * to read the current number of free stack words (integers) call stack_get_free_words |
tass | 6:e7d71e575d37 | 5 | * |
tass | 6:e7d71e575d37 | 6 | * To enable memory measurement go to pico_mbed.h and add |
tass | 6:e7d71e575d37 | 7 | * #define MEMORY_MEASURE |
tass | 6:e7d71e575d37 | 8 | */ |
tass | 6:e7d71e575d37 | 9 | |
tass | 0:ebcbe44e53dd | 10 | #include <mbed.h> |
tass | 0:ebcbe44e53dd | 11 | #include <stdarg.h> |
tass | 0:ebcbe44e53dd | 12 | #include "EthernetInterface.h" |
tass | 0:ebcbe44e53dd | 13 | |
tass | 6:e7d71e575d37 | 14 | extern "C" |
tass | 6:e7d71e575d37 | 15 | { |
tass | 6:e7d71e575d37 | 16 | #include "pico_mbed.h" |
tass | 6:e7d71e575d37 | 17 | #ifdef MEMORY_MEASURE |
tass | 6:e7d71e575d37 | 18 | uint32_t max_mem; |
tass | 6:e7d71e575d37 | 19 | uint32_t cur_mem; |
tass | 6:e7d71e575d37 | 20 | #endif |
tass | 6:e7d71e575d37 | 21 | } |
tass | 6:e7d71e575d37 | 22 | |
tass | 0:ebcbe44e53dd | 23 | #define ECHO_SERVER_PORT 7 |
tass | 0:ebcbe44e53dd | 24 | #define BUFFER_QUANTITY (1024*1024) |
tass | 0:ebcbe44e53dd | 25 | |
tass | 6:e7d71e575d37 | 26 | //#define printf(...) do{}while(0) |
tass | 0:ebcbe44e53dd | 27 | |
tass | 6:e7d71e575d37 | 28 | void printMemoryStats(void) |
tass | 0:ebcbe44e53dd | 29 | { |
tass | 6:e7d71e575d37 | 30 | #ifdef PICO_MEASURE_STACK |
tass | 6:e7d71e575d37 | 31 | printf("******** Stack Statistics\n"); |
tass | 6:e7d71e575d37 | 32 | printf("Current free stack : %d bytes\n",stack_get_free_words()*sizeof(int)); |
tass | 6:e7d71e575d37 | 33 | printf("Total stack size : %d bytes\n",STACK_TOTAL_WORDS*sizeof(int)); |
tass | 6:e7d71e575d37 | 34 | printf("Used : %.2f %%\n",100.0*(float)(STACK_TOTAL_WORDS-stack_get_free_words())/STACK_TOTAL_WORDS); |
tass | 6:e7d71e575d37 | 35 | #endif |
tass | 0:ebcbe44e53dd | 36 | |
tass | 6:e7d71e575d37 | 37 | #ifdef MEMORY_MEASURE |
tass | 6:e7d71e575d37 | 38 | printf("******** Memory Statistics\n"); |
tass | 6:e7d71e575d37 | 39 | printf("Current used memory : %d bytes\n",cur_mem); |
tass | 6:e7d71e575d37 | 40 | printf("Maximum used memory : %d bytes\n",max_mem); |
tass | 6:e7d71e575d37 | 41 | #endif |
tass | 0:ebcbe44e53dd | 42 | } |
tass | 0:ebcbe44e53dd | 43 | |
tass | 0:ebcbe44e53dd | 44 | int main() { |
tass | 0:ebcbe44e53dd | 45 | |
tass | 0:ebcbe44e53dd | 46 | printf("Ethernet Interface memory test....\n"); |
tass | 1:f014c48d0517 | 47 | |
tass | 0:ebcbe44e53dd | 48 | EthernetInterface eth; |
tass | 0:ebcbe44e53dd | 49 | int connections = 0; |
tass | 5:7a73a14f5e85 | 50 | eth.init(); |
tass | 6:e7d71e575d37 | 51 | printf("Waiting for DHCP to give IP\n"); |
tass | 6:e7d71e575d37 | 52 | while(eth.connect() != 0); |
tass | 0:ebcbe44e53dd | 53 | printf("IP Address %s\n", eth.getIPAddress()); |
tass | 0:ebcbe44e53dd | 54 | |
tass | 0:ebcbe44e53dd | 55 | TCPSocketServer server; |
tass | 0:ebcbe44e53dd | 56 | server.bind(ECHO_SERVER_PORT); |
tass | 0:ebcbe44e53dd | 57 | server.listen(); |
tass | 0:ebcbe44e53dd | 58 | |
tass | 0:ebcbe44e53dd | 59 | while (true) { |
tass | 0:ebcbe44e53dd | 60 | printf("\nWait for new connection...\n"); |
tass | 0:ebcbe44e53dd | 61 | printf("Client number %d\n",++connections); |
tass | 0:ebcbe44e53dd | 62 | TCPSocketConnection client; |
tass | 0:ebcbe44e53dd | 63 | server.accept(client); |
tass | 0:ebcbe44e53dd | 64 | client.set_blocking(false, 1500); // Timeout after (1.5)s |
tass | 0:ebcbe44e53dd | 65 | printf("Connection from: %s\n", client.get_address()); |
tass | 0:ebcbe44e53dd | 66 | char buffer[1024]; |
tass | 0:ebcbe44e53dd | 67 | while (true) { |
tass | 0:ebcbe44e53dd | 68 | |
tass | 0:ebcbe44e53dd | 69 | int dataReceived = 0; |
tass | 0:ebcbe44e53dd | 70 | int dataSent = 0; |
tass | 0:ebcbe44e53dd | 71 | |
tass | 0:ebcbe44e53dd | 72 | while(dataReceived < BUFFER_QUANTITY) |
tass | 0:ebcbe44e53dd | 73 | { |
tass | 0:ebcbe44e53dd | 74 | int n = client.receive(buffer, sizeof(buffer)); |
tass | 0:ebcbe44e53dd | 75 | if (n <= 0) { |
tass | 0:ebcbe44e53dd | 76 | printf("Receive error\n"); |
tass | 0:ebcbe44e53dd | 77 | break; |
tass | 0:ebcbe44e53dd | 78 | } |
tass | 0:ebcbe44e53dd | 79 | dataReceived += n; |
tass | 0:ebcbe44e53dd | 80 | } |
tass | 0:ebcbe44e53dd | 81 | |
tass | 0:ebcbe44e53dd | 82 | if(dataReceived < BUFFER_QUANTITY) |
tass | 0:ebcbe44e53dd | 83 | { |
tass | 0:ebcbe44e53dd | 84 | printf("Receiving part of the test has failed. Exiting connection.\n"); |
tass | 6:e7d71e575d37 | 85 | printf("Received : %d bytes\nExpected : %d bytes\n",dataReceived,BUFFER_QUANTITY); |
tass | 0:ebcbe44e53dd | 86 | break; |
tass | 0:ebcbe44e53dd | 87 | } |
tass | 0:ebcbe44e53dd | 88 | |
tass | 0:ebcbe44e53dd | 89 | while(dataSent < BUFFER_QUANTITY) |
tass | 0:ebcbe44e53dd | 90 | { |
tass | 0:ebcbe44e53dd | 91 | int n = client.send_all(buffer, sizeof(buffer)); |
tass | 0:ebcbe44e53dd | 92 | if (n <= 0) { |
tass | 0:ebcbe44e53dd | 93 | printf("Send error\n"); |
tass | 0:ebcbe44e53dd | 94 | break; |
tass | 0:ebcbe44e53dd | 95 | } |
tass | 0:ebcbe44e53dd | 96 | dataSent += n; |
tass | 0:ebcbe44e53dd | 97 | } |
tass | 0:ebcbe44e53dd | 98 | |
tass | 0:ebcbe44e53dd | 99 | if(dataSent < BUFFER_QUANTITY) |
tass | 0:ebcbe44e53dd | 100 | { |
tass | 0:ebcbe44e53dd | 101 | printf("Sending part of the test has failed. Exiting connection.\n"); |
tass | 6:e7d71e575d37 | 102 | printf("Sent : %d bytes\nExpected : %d bytes\n",dataSent,BUFFER_QUANTITY); |
tass | 6:e7d71e575d37 | 103 | |
tass | 0:ebcbe44e53dd | 104 | break; |
tass | 0:ebcbe44e53dd | 105 | } |
tass | 0:ebcbe44e53dd | 106 | |
tass | 0:ebcbe44e53dd | 107 | dataReceived = dataSent = 0; |
tass | 0:ebcbe44e53dd | 108 | while((dataReceived+dataSent) < 2*BUFFER_QUANTITY) |
tass | 0:ebcbe44e53dd | 109 | { |
tass | 0:ebcbe44e53dd | 110 | int n = client.receive(buffer, sizeof(buffer)); |
tass | 0:ebcbe44e53dd | 111 | if (n <= 0) { |
tass | 0:ebcbe44e53dd | 112 | printf("Receive error\n"); |
tass | 0:ebcbe44e53dd | 113 | break; |
tass | 0:ebcbe44e53dd | 114 | } |
tass | 0:ebcbe44e53dd | 115 | dataReceived += n; |
tass | 0:ebcbe44e53dd | 116 | |
tass | 0:ebcbe44e53dd | 117 | n = client.send_all(buffer, n); |
tass | 0:ebcbe44e53dd | 118 | if (n <= 0) { |
tass | 0:ebcbe44e53dd | 119 | printf("Send error\n"); |
tass | 0:ebcbe44e53dd | 120 | break; |
tass | 0:ebcbe44e53dd | 121 | } |
tass | 0:ebcbe44e53dd | 122 | dataSent += n; |
tass | 0:ebcbe44e53dd | 123 | } |
tass | 0:ebcbe44e53dd | 124 | |
tass | 0:ebcbe44e53dd | 125 | if((dataReceived+dataSent) < 2*BUFFER_QUANTITY) |
tass | 0:ebcbe44e53dd | 126 | { |
tass | 6:e7d71e575d37 | 127 | printf("Echo size : %d bytes\nExpected : %d bytes\n",(dataReceived+dataSent),2*BUFFER_QUANTITY); |
tass | 0:ebcbe44e53dd | 128 | printf("Echo test has failed.Exiting connection...\n"); |
tass | 0:ebcbe44e53dd | 129 | } |
tass | 6:e7d71e575d37 | 130 | |
tass | 3:8892f28e2e58 | 131 | break; |
tass | 0:ebcbe44e53dd | 132 | } |
tass | 6:e7d71e575d37 | 133 | |
tass | 0:ebcbe44e53dd | 134 | client.close(); |
tass | 1:f014c48d0517 | 135 | printf("Test was finished...\n"); |
tass | 1:f014c48d0517 | 136 | printMemoryStats(); |
tass | 0:ebcbe44e53dd | 137 | } |
tass | 0:ebcbe44e53dd | 138 | |
tass | 0:ebcbe44e53dd | 139 | return 0; |
tass | 0:ebcbe44e53dd | 140 | } |