/** * This file is part of BCM4751 gpsd * * Copyright (C) 2011 Paul Kocialkowski * * BCM4751 gpsd is free software: you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation, either version 3 of the License, or * (at your option) any later version. * * BCM4751 gpsd is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with BCM4751 gpsd. If not, see . */ #include #include #include #include #include #include #include #include #include #include "meif.h" struct meif_message *meif_message_from_data(void *data, int length) { struct meif_message *meif_message = NULL; struct meif_header *meif_header = NULL; void *message_data = NULL; int message_data_length = 0; uint16_t marker = 0; if(data == NULL || length < sizeof(struct meif_header)) return NULL; meif_header = (struct meif_header *) data; marker = meif_header->marker; if(marker != MEIF_START) return NULL; marker = *((uint16_t *) ((uint8_t *) data + length - sizeof(marker))); if(marker != MEIF_END) return NULL; meif_message = calloc(1, sizeof(struct meif_message)); message_data_length = length - sizeof(struct meif_header) - sizeof(marker); if(message_data_length > 0) { message_data = calloc(1, message_data_length); memcpy(message_data, (void *) ((uint8_t *) data + sizeof(struct meif_header)), message_data_length); meif_message->length = message_data_length; meif_message->data = message_data; } meif_message->command = meif_header->command; return meif_message; } void meif_message_free(struct meif_message *meif_message) { if(meif_message == NULL) return; if(meif_message->data != NULL) free(meif_message->data); memset(meif_message, 0, sizeof(struct meif_message)); free(meif_message); } void meif_message_log(struct meif_message *meif_message) { char *command = NULL; if(meif_message == NULL) return; switch(meif_message->command) { case MEIF_ACK_MSG: command = "MEIF_ACK_MSG"; break; case MEIF_NACK_MSG: command = "MEIF_NACK_MSG"; break; case MEIF_STATE_REPORT_MSG: command = "MEIF_STATE_REPORT_MSG"; break; case MEIF_CONFIG_VALUES_MSG: command = "MEIF_CONFIG_VALUES_MSG"; break; default: command = "MEIF_UNKNOWN_MSG"; break; } printf("MEIF message: %s with %d bytes of data:\n", command, meif_message->length); if(meif_message->data != NULL && meif_message->length > 0) hex_dump(meif_message->data, meif_message->length); } int meif_dispatch(struct meif_message *meif_message) { struct meif_config_values *config_values; switch(meif_message->command) { case MEIF_ACK_MSG: printf("Got an ACK message\n\n"); break; case MEIF_NACK_MSG: printf("Got a NACK message\n\n"); break; case MEIF_STATE_REPORT_MSG: printf("Got a STATE_REPORT message\n\n"); break; case MEIF_CONFIG_VALUES_MSG: if(meif_message->data != NULL && meif_message->length >= sizeof(struct meif_config_values)) { config_values = (struct meif_config_values *) meif_message->data; printf("Got config values:\n\tvendor: %s\n\tproduct: %s\n\n", config_values->vendor, config_values->product); } break; } return 0; } void meif_read_loop(int fd) { void *data = NULL; int length = 0x100; uint16_t *meif_data_waiting = NULL; int meif_data_waiting_length = 0; struct meif_message *meif_message = NULL; struct meif_header *meif_header = NULL; uint16_t *meif_data = NULL; int meif_data_length = 0; uint16_t marker = 0; int run = 1; int rc = -1; int i; data = malloc(length); while(run) { meif_message = NULL; meif_header = NULL; marker = 0; if(meif_data == NULL) { rc = bcm4751_serial_read(fd, data, length, NULL); if(rc <= 0) { free(data); return; } } else if(meif_data_length > 0) { if(meif_data_length > length) meif_data_length = length; memcpy(data, (void *) meif_data, meif_data_length); rc = meif_data_length; free(meif_data); meif_data = NULL; meif_data_length = 0; } printf("Read %d bytes\n", rc); if(meif_data_waiting == NULL) { // Read the start marker for(i=0 ; i < rc ; i++) { marker = *((uint16_t *) (data + i)); if(marker == MEIF_START) { // Raw MEIF data and header meif_data_length = rc - i; meif_data = (uint16_t *) malloc(meif_data_length); memcpy((void *) meif_data, (void *) (data + i), meif_data_length); meif_header = (struct meif_header *) meif_data; break; } } } else if(meif_data_waiting_length > 0) { // There is an uncomplete message waiting // Raw data and header from the waiting and the new data meif_data_length = meif_data_waiting_length + rc; meif_data = malloc(meif_data_length); memcpy((void *) meif_data, (void *) meif_data_waiting, meif_data_waiting_length); memcpy((void *) meif_data + meif_data_waiting_length, (void *) data, rc); meif_header = (struct meif_header *) meif_data; free(meif_data_waiting); meif_data_waiting = NULL; meif_data_waiting_length = 0; } if(meif_data == NULL || meif_header == NULL) { printf("No usable data found, skipping!\n"); continue; } // The message wasn't fully retrieved if(meif_data_length < sizeof(struct meif_header) || (meif_data_length - i - sizeof(struct meif_header)) < meif_header->length) { meif_data_waiting = meif_data; meif_data_waiting_length = meif_data_length; meif_data = NULL; meif_data_length = 0; continue; } else { // Read the end marker for(i=meif_header->length ; i < meif_data_length ; i++) { // We go with a 6 left offset from the announced end of the message marker = *((uint16_t *) ((void *) meif_data + i)); if(marker == MEIF_END) { meif_message = meif_message_from_data((void *) meif_data, i + sizeof(marker)); if(meif_message == NULL) printf("Failed to create a MEIF message!\n"); break; } } // No end marker was found if(i == meif_data_length) { // meif_data and meif_data_length are still set, so they will be used continue; } // There is still data after the end of the message if(meif_data_length - i - 1 >= sizeof(marker)) { meif_data_waiting_length = meif_data_length - i - 2; meif_data_waiting = (uint16_t *) malloc(meif_data_waiting_length); memcpy((void *) meif_data_waiting, (void *) meif_data + i + 2, meif_data_waiting_length); free(meif_data); meif_data = meif_data_waiting; meif_data_length = meif_data_waiting_length; } else { free(meif_data); meif_data = NULL; meif_data_length = 0; } meif_data_waiting = NULL; meif_data_waiting_length = 0; } if(meif_message != NULL) { meif_message_log(meif_message); rc = meif_dispatch(meif_message); if(rc < 0) run = 0; meif_message_free(meif_message); } } }