/* * Copyright 2010 Stefan Lankes, Chair for Operating Systems, * RWTH Aachen University * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. * * This file is part of MetalSVM. */ #include #include #include #include #include #include #include #include #include #ifdef CONFIG_ROCKCREEK #include #include #include #include #include #include #include #include #include "client.h" #include "server.h" #include "shell.h" #endif static sem_t consuming, producing; static mailbox_int32_t mbox; static int val = 0; static int consumer(void* arg) { int i, m = 0; for(i=0; i<5; i++) { sem_wait(&consuming, 0); kprintf("Consumer got %d\n", val); val = 0; sem_post(&producing); } for(i=0; i<5; i++) { mailbox_int32_fetch(&mbox, &m, 0); kprintf("Got mail %d\n", m); } return 0; } static int producer(void* arg) { int i; int mail[5] = {1, 2, 3, 4, 5}; for(i=0; i<5; i++) { sem_wait(&producing, 0); kprintf("Produce value: current val %d\n", val); val = 42; sem_post(&consuming); } for(i=0; i<5; i++) { //kprintf("Send mail %d\n", mail[i]); mailbox_int32_post(&mbox, mail[i]); } return 0; } static int foo(void* arg) { int i; if (!arg) return 0; for(i=0; i<5; i++) { kprintf("Message from core %d: %s\n", smp_id(), (char*) arg); sleep(1); } return 42; } #ifdef CONFIG_ROCKCREEK static int mail_ping(void* arg) { //icc_mail_ping(); icc_mail_ping_irq(); //icc_irq_ping(); //icc_halt(); return 0; } static int mail_noise(void*arg) { icc_mail_noise(); // generate noise in the mesh return 0; } #define N 1024 //#define N 514 #define LAZY volatile static int* A[N]; volatile static int* B[N]; volatile static int* C[N]; #if 0 #define GET_B(i, j) B[i][j] #else #define GET_B(i, j) B[j][i] #endif static int svm_test(void *arg) { uint64_t start, end; uint32_t i, j, k; int my_ue, num_ues; register int tmp; RCCE_barrier(&RCCE_COMM_WORLD); my_ue = RCCE_ue(); num_ues = RCCE_num_ues(); #if 0 if (!my_ue) { // allocate and initialize SVM region A[0] = (int*) kmalloc(3*N*N*sizeof(int)); memset((void*) A[0], 0x00, 3*N*N*sizeof(int)); // initialize matrices for(i=0; idwLen,e->pBuffer); // srv_cnt++; /* printf("%i:",cnt); puts(e->pBuffer); puts("\n"); cnt++; */ } void srv_on_disc(ServerEventArgs*e ) { kprintf("connection lost!!!\n"); } void srv_on_conn(ServerEventArgs* e) { int i = 0, err = 0; int tmp1,tmp2; char buff[1024]; SHELLDEBUGPRINTF("someone finally connected\n"); tmp1 = get_clock_tick(); for (i = 0; i < 1024*4; i++) { err = srv_sendBuffer(&srv,e->ClientID,buff,sizeof(buff)); if ( err < 0) { SHELLDEBUGPRINTF("err: %d", err); } if (!(i%10)) { SHELLDEBUGPRINTF("\r-%d-",i); } } tmp2 = get_clock_tick(); // SHELLDEBUGPRINTF("send with %f kb/s",((float)i*sizeof(buff))/(tmp2-tmp1)); SHELLDEBUGPRINTF("send %d bytes in %d ticks",i*sizeof(buff),(tmp2-tmp1)); } void* server_task(void* e) { SHELLDEBUGPRINTF("created server\n"); server_init(&srv,5555,2); srv._OnRead = srv_on_read; srv._OnDisconnect = srv_on_disc; srv._OnConnect = srv_on_conn; while(1) sleep(2); return NULL; } static int cli_cnt = 0; void cli_on_read(ClientEventArgs* e) { kprintf("\r-%d-",cli_cnt); cli_cnt++; // printf("%i:",cnt); // hex_dump(e->dwLen,e->pBuffer); // cnt++; /* puts(e->pBuffer); puts("\n"); cnt++; */ } void cli_on_disc(ClientEventArgs*e ) { kprintf("connection lost!!!\n"); } void* client_task(void* e) { int err = -2; Client cli; char netbuffer[256]; kprintf("created client"); cli_init(&cli); cli._OnRead = cli_on_read; cli._OnDisconnect = cli_on_disc; sleep(2); SHELLDEBUGPRINTF("Client is ready...\n"); while (err) { sleep(1); err = cli_ConnectTo(&cli,"192.168.0.1",5555,0); SHELLDEBUGPRINTF("retry connect err = %d socket: %d\n",err,cli.sSocket); } SHELLDEBUGPRINTF("connected\n"); sleep(1); err = cli_sendBuffer(&cli,"Hallo Welt",sizeof("Hallo Welt")); SHELLDEBUGPRINTF("send message err = %d\n",err); while(1) sleep(2); return NULL; } #endif int test_init(void) { // char* argv[] = {"/bin/mshell", NULL}; char* argv[] = {"/bin/tests", NULL}; // char* server_argv[] = {"/bin/server", "6789", NULL}; // char* client_argv[] = {"/bin/client", "127.0.0.1", "6789", NULL}; sem_init(&producing, 1); sem_init(&consuming, 0); mailbox_int32_init(&mbox); #if defined(CONFIG_LWIP) && defined(CONFIG_ROCKCREEK) // shell_init(RCCE_ue()); // // sleep(10); // SHELLDEBUGPRINTF("hello World! I AM CORE NO. %d =) \n",RCCE_ue()); // if (!RCCE_ue()) // create_kernel_task(NULL,server_task,NULL); // else // create_kernel_task(NULL,client_task,NULL); #endif create_kernel_task(NULL, foo, "Hello from foo1", NORMAL_PRIO); create_kernel_task(NULL, join_test, NULL, NORMAL_PRIO); //create_kernel_task(NULL, producer, , NORMAL_PRIO); //create_kernel_task(NULL, consumer, NULL, NORMAL_PRIO); //create_kernel_task(NULL, mail_ping, NULL, NORMAL_PRIO); //create_kernel_task(NULL, mail_noise, NULL, NORMAL_PRIO); //create_kernel_task(NULL, svm_test, NULL, NORMAL_PRIO); //create_user_task(NULL, "/bin/hello", argv); create_user_task(NULL, "/bin/tests", argv); //create_user_task(NULL, "/bin/jacobi", argv); //create_user_task(NULL, "/bin/mshell", argv); //create_user_task(NULL, "/bin/jacobi", argv); //create_user_task(NULL, "/bin/server", server_argv); //sleep(5); //create_user_task(NULL, "/bin/client", client_argv); return 0; }