Make Things more Windows friendly
Change the following so that M$ compilers and debuggers complain less 1) change all long long data types to uint64_t. 2) Typecast all malloc function returns to the correct pointer types. 3) Explicitly typecast all float to int conversions. 4) Remove inline variable declaration. Allowed in C++, but not in C.
This commit is contained in:
parent
d02a4043fe
commit
ff34693d1e
92
dump1090.c
92
dump1090.c
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@ -27,7 +27,7 @@
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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*/
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#ifndef _WIN32
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#include <stdio.h>
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#include <stdio.h>
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#include <string.h>
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#include <string.h>
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#include <stdlib.h>
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#include <stdlib.h>
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@ -43,6 +43,10 @@
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#include <sys/stat.h>
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#include <sys/stat.h>
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#include "rtl-sdr.h"
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#include "rtl-sdr.h"
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#include "anet.h"
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#include "anet.h"
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#else
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#include "dump1090.h" //Put everything Windows specific in here
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#include "rtl-sdr.h"
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#endif
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#define MODES_DEFAULT_RATE 2000000
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#define MODES_DEFAULT_RATE 2000000
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#define MODES_DEFAULT_FREQ 1090000000
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#define MODES_DEFAULT_FREQ 1090000000
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@ -122,7 +126,7 @@ struct aircraft {
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int even_cprlat;
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int even_cprlat;
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int even_cprlon;
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int even_cprlon;
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double lat, lon; /* Coordinated obtained from CPR encoded data. */
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double lat, lon; /* Coordinated obtained from CPR encoded data. */
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long long odd_cprtime, even_cprtime;
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uint64_t odd_cprtime, even_cprtime;
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int squawk;
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int squawk;
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struct aircraft *next; /* Next aircraft in our linked list. */
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struct aircraft *next; /* Next aircraft in our linked list. */
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};
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};
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@ -135,7 +139,7 @@ struct {
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pthread_cond_t data_cond; /* Conditional variable associated. */
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pthread_cond_t data_cond; /* Conditional variable associated. */
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uint16_t *data; /* Raw IQ samples buffer */
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uint16_t *data; /* Raw IQ samples buffer */
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uint16_t *magnitude; /* Magnitude vector */
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uint16_t *magnitude; /* Magnitude vector */
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long long timestampBlk; /* Timestamp of the start of the current block */
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uint64_t timestampBlk; /* Timestamp of the start of the current block */
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int fd; /* --ifile option file descriptor. */
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int fd; /* --ifile option file descriptor. */
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int data_ready; /* Data ready to be processed. */
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int data_ready; /* Data ready to be processed. */
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uint32_t *icao_cache; /* Recently seen ICAO addresses cache. */
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uint32_t *icao_cache; /* Recently seen ICAO addresses cache. */
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@ -183,19 +187,19 @@ struct {
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/* Interactive mode */
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/* Interactive mode */
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struct aircraft *aircrafts;
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struct aircraft *aircrafts;
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long long interactive_last_update; /* Last screen update in milliseconds */
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uint64_t interactive_last_update; /* Last screen update in milliseconds */
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/* Statistics */
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/* Statistics */
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long long stat_valid_preamble;
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uint64_t stat_valid_preamble;
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long long stat_demodulated;
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uint64_t stat_demodulated;
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long long stat_goodcrc;
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uint64_t stat_goodcrc;
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long long stat_badcrc;
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uint64_t stat_badcrc;
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long long stat_fixed;
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uint64_t stat_fixed;
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long long stat_single_bit_fix;
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uint64_t stat_single_bit_fix;
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long long stat_two_bits_fix;
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uint64_t stat_two_bits_fix;
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long long stat_http_requests;
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uint64_t stat_http_requests;
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long long stat_sbs_connections;
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uint64_t stat_sbs_connections;
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long long stat_out_of_phase;
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uint64_t stat_out_of_phase;
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} Modes;
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} Modes;
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/* The struct we use to store information about a decoded message. */
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/* The struct we use to store information about a decoded message. */
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@ -209,7 +213,7 @@ struct modesMessage {
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int errorbit; /* Bit corrected. -1 if no bit corrected. */
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int errorbit; /* Bit corrected. -1 if no bit corrected. */
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int aa1, aa2, aa3; /* ICAO Address bytes 1 2 and 3 */
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int aa1, aa2, aa3; /* ICAO Address bytes 1 2 and 3 */
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int phase_corrected; /* True if phase correction was applied. */
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int phase_corrected; /* True if phase correction was applied. */
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long long timestampMsg; /* Timestamp of the message. */
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uint64_t timestampMsg; /* Timestamp of the message. */
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unsigned char signalLevel; /* Signal Amplitude */
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unsigned char signalLevel; /* Signal Amplitude */
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/* DF 11 */
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/* DF 11 */
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@ -257,12 +261,12 @@ int modesMessageLenByType(int type);
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/* ============================= Utility functions ========================== */
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/* ============================= Utility functions ========================== */
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static long long mstime(void) {
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static uint64_t mstime(void) {
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struct timeval tv;
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struct timeval tv;
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long long mst;
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uint64_t mst;
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gettimeofday(&tv, NULL);
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gettimeofday(&tv, NULL);
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mst = ((long long)tv.tv_sec)*1000;
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mst = ((uint64_t)tv.tv_sec)*1000;
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mst += tv.tv_usec/1000;
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mst += tv.tv_usec/1000;
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return mst;
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return mst;
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}
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}
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@ -309,12 +313,12 @@ void modesInit(void) {
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Modes.timestampBlk = 0;
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Modes.timestampBlk = 0;
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/* Allocate the ICAO address cache. We use two uint32_t for every
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/* Allocate the ICAO address cache. We use two uint32_t for every
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* entry because it's a addr / timestamp pair for every entry. */
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* entry because it's a addr / timestamp pair for every entry. */
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Modes.icao_cache = malloc(sizeof(uint32_t)*MODES_ICAO_CACHE_LEN*2);
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Modes.icao_cache = (uint32_t *) malloc(sizeof(uint32_t)*MODES_ICAO_CACHE_LEN*2);
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memset(Modes.icao_cache,0,sizeof(uint32_t)*MODES_ICAO_CACHE_LEN*2);
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memset(Modes.icao_cache,0,sizeof(uint32_t)*MODES_ICAO_CACHE_LEN*2);
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Modes.aircrafts = NULL;
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Modes.aircrafts = NULL;
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Modes.interactive_last_update = 0;
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Modes.interactive_last_update = 0;
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if ((Modes.data = malloc(MODES_ASYNC_BUF_SIZE)) == NULL ||
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if ((Modes.data = (uint16_t *) malloc(MODES_ASYNC_BUF_SIZE)) == NULL ||
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(Modes.magnitude = malloc(MODES_ASYNC_BUF_SIZE+MODES_PREAMBLE_SIZE+MODES_LONG_MSG_SIZE)) == NULL) {
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(Modes.magnitude = (uint16_t *) malloc(MODES_ASYNC_BUF_SIZE+MODES_PREAMBLE_SIZE+MODES_LONG_MSG_SIZE)) == NULL) {
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fprintf(stderr, "Out of memory allocating data buffer.\n");
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fprintf(stderr, "Out of memory allocating data buffer.\n");
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exit(1);
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exit(1);
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}
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}
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@ -870,8 +874,8 @@ int decodeAC12Field(unsigned char *msg, int *unit) {
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if (q_bit) {
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if (q_bit) {
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/* N is the 11 bit integer resulting from the removal of bit
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/* N is the 11 bit integer resulting from the removal of bit
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* Q */
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* Q */
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*unit = MODES_UNIT_FEET;
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int n = ((msg[5]>>1)<<4) | ((msg[6]&0xF0) >> 4);
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int n = ((msg[5]>>1)<<4) | ((msg[6]&0xF0) >> 4);
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*unit = MODES_UNIT_FEET;
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/* The final altitude is due to the resulting number multiplied
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/* The final altitude is due to the resulting number multiplied
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* by 25, minus 1000. */
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* by 25, minus 1000. */
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return n*25-1000;
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return n*25-1000;
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@ -1091,7 +1095,7 @@ void decodeModesMessage(struct modesMessage *mm, unsigned char *msg) {
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mm->vert_rate = ((msg[8]&7) << 6) | ((msg[9]&0xfc) >> 2);
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mm->vert_rate = ((msg[8]&7) << 6) | ((msg[9]&0xfc) >> 2);
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/* Compute velocity and angle from the two speed
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/* Compute velocity and angle from the two speed
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* components. */
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* components. */
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mm->velocity = sqrt(mm->ns_velocity*mm->ns_velocity+
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mm->velocity = (int) sqrt(mm->ns_velocity*mm->ns_velocity+
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mm->ew_velocity*mm->ew_velocity);
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mm->ew_velocity*mm->ew_velocity);
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if (mm->velocity) {
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if (mm->velocity) {
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int ewv = mm->ew_velocity;
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int ewv = mm->ew_velocity;
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@ -1103,7 +1107,7 @@ void decodeModesMessage(struct modesMessage *mm, unsigned char *msg) {
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heading = atan2(ewv,nsv);
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heading = atan2(ewv,nsv);
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/* Convert to degrees. */
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/* Convert to degrees. */
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mm->heading = heading * 360 / (M_PI*2);
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mm->heading = (int) (heading * 360 / (M_PI*2));
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/* We don't want negative values but a 0-360 scale. */
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/* We don't want negative values but a 0-360 scale. */
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if (mm->heading < 0) mm->heading += 360;
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if (mm->heading < 0) mm->heading += 360;
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} else {
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} else {
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@ -1111,7 +1115,7 @@ void decodeModesMessage(struct modesMessage *mm, unsigned char *msg) {
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}
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}
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} else if (mm->mesub == 3 || mm->mesub == 4) {
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} else if (mm->mesub == 3 || mm->mesub == 4) {
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mm->heading_is_valid = msg[5] & (1<<2);
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mm->heading_is_valid = msg[5] & (1<<2);
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mm->heading = (360.0/128) * (((msg[5] & 3) << 5) |
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mm->heading = (int) (360.0/128) * (((msg[5] & 3) << 5) |
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(msg[6] >> 3));
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(msg[6] >> 3));
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}
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}
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}
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}
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for (j = 0; j < mlen; j++) {
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for (j = 0; j < mlen; j++) {
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int low, high, delta, i, errors;
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int low, high, delta, i, errors;
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int good_message = 0;
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int good_message = 0;
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int msglen;
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if (use_correction) goto good_preamble; /* We already checked it. */
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if (use_correction) goto good_preamble; /* We already checked it. */
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@ -1454,8 +1459,7 @@ good_preamble:
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bits[i+7];
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bits[i+7];
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}
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}
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int msgtype = msg[0]>>3;
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msglen = modesMessageLenByType(msg[0] >> 3) / 8;
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int msglen = modesMessageLenByType(msgtype)/8;
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/* Last check, high and low bits are different enough in magnitude
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/* Last check, high and low bits are different enough in magnitude
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* to mark this as real message and not just noise? */
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* to mark this as real message and not just noise? */
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/* Return a new aircraft structure for the interactive mode linked list
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/* Return a new aircraft structure for the interactive mode linked list
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* of aircrafts. */
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* of aircrafts. */
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struct aircraft *interactiveCreateAircraft(uint32_t addr) {
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struct aircraft *interactiveCreateAircraft(uint32_t addr) {
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struct aircraft *a = malloc(sizeof(*a));
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struct aircraft *a = (struct aircraft *) malloc(sizeof(*a));
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a->addr = addr;
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a->addr = addr;
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snprintf(a->hexaddr,sizeof(a->hexaddr),"%06x",(int)addr);
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snprintf(a->hexaddr,sizeof(a->hexaddr),"%06x",(int)addr);
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double lon1 = a->odd_cprlon;
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double lon1 = a->odd_cprlon;
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/* Compute the Latitude Index "j" */
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/* Compute the Latitude Index "j" */
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int j = floor(((59*lat0 - 60*lat1) / 131072) + 0.5);
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int j = (int) floor(((59*lat0 - 60*lat1) / 131072) + 0.5);
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double rlat0 = AirDlat0 * (cprModFunction(j,60) + lat0 / 131072);
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double rlat0 = AirDlat0 * (cprModFunction(j,60) + lat0 / 131072);
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double rlat1 = AirDlat1 * (cprModFunction(j,59) + lat1 / 131072);
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double rlat1 = AirDlat1 * (cprModFunction(j,59) + lat1 / 131072);
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@ -1725,14 +1729,14 @@ void decodeCPR(struct aircraft *a) {
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if (a->even_cprtime > a->odd_cprtime) {
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if (a->even_cprtime > a->odd_cprtime) {
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/* Use even packet. */
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/* Use even packet. */
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int ni = cprNFunction(rlat0,0);
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int ni = cprNFunction(rlat0,0);
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int m = floor((((lon0 * (cprNLFunction(rlat0)-1)) -
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int m = (int) floor((((lon0 * (cprNLFunction(rlat0)-1)) -
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(lon1 * cprNLFunction(rlat0))) / 131072) + 0.5);
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(lon1 * cprNLFunction(rlat0))) / 131072) + 0.5);
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a->lon = cprDlonFunction(rlat0,0) * (cprModFunction(m,ni)+lon0/131072);
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a->lon = cprDlonFunction(rlat0,0) * (cprModFunction(m,ni)+lon0/131072);
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a->lat = rlat0;
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a->lat = rlat0;
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} else {
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} else {
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/* Use odd packet. */
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/* Use odd packet. */
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int ni = cprNFunction(rlat1,1);
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int ni = cprNFunction(rlat1,1);
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int m = floor((((lon0 * (cprNLFunction(rlat1)-1)) -
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int m = (int) floor((((lon0 * (cprNLFunction(rlat1)-1)) -
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(lon1 * cprNLFunction(rlat1))) / 131072.0) + 0.5);
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(lon1 * cprNLFunction(rlat1))) / 131072.0) + 0.5);
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a->lon = cprDlonFunction(rlat1,1) * (cprModFunction(m,ni)+lon1/131072);
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a->lon = cprDlonFunction(rlat1,1) * (cprModFunction(m,ni)+lon1/131072);
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a->lat = rlat1;
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a->lat = rlat1;
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@ -1796,7 +1800,7 @@ struct aircraft *interactiveReceiveData(struct modesMessage *mm) {
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}
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}
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/* If the two data is less than 10 seconds apart, compute
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/* If the two data is less than 10 seconds apart, compute
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* the position. */
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* the position. */
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if (abs(a->even_cprtime - a->odd_cprtime) <= 10000) {
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if (abs((int)(a->even_cprtime - a->odd_cprtime)) <= 10000) {
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decodeCPR(a);
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decodeCPR(a);
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}
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}
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} else if (mm->metype == 19) {
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} else if (mm->metype == 19) {
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@ -1828,11 +1832,12 @@ void interactiveShowData(void) {
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while(a && count < Modes.interactive_rows) {
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while(a && count < Modes.interactive_rows) {
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int altitude = a->altitude, speed = a->speed, msgs = a->messages;
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int altitude = a->altitude, speed = a->speed, msgs = a->messages;
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char squawk[5] = "0";
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char squawk[5] = "0";
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char spacer = '\0';
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/* Convert units to metric if --metric was specified. */
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/* Convert units to metric if --metric was specified. */
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if (Modes.metric) {
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if (Modes.metric) {
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altitude /= 3.2828;
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altitude = (int) (altitude / 3.2828);
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speed *= 1.852;
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speed = (int) (speed * 1.852);
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}
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}
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if (altitude > 99999) {
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if (altitude > 99999) {
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@ -1849,7 +1854,6 @@ void interactiveShowData(void) {
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msgs = 99999;
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msgs = 99999;
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}
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}
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char spacer = '\0';
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if ((int)(now - a->seen) < 10) {
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if ((int)(now - a->seen) < 10) {
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spacer = ' ';
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spacer = ' ';
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}
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}
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@ -1893,7 +1897,7 @@ void interactiveRemoveStaleAircrafts(void) {
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* for more than 256 samples in order to reduce example file size. */
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* for more than 256 samples in order to reduce example file size. */
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void snipMode(int level) {
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void snipMode(int level) {
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int i, q;
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int i, q;
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long long c = 0;
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uint64_t c = 0;
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while ((i = getchar()) != EOF && (q = getchar()) != EOF) {
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while ((i = getchar()) != EOF && (q = getchar()) != EOF) {
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if (abs(i-127) < level && abs(q-127) < level) {
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if (abs(i-127) < level && abs(q-127) < level) {
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@ -1974,7 +1978,7 @@ void modesAcceptClients(void) {
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}
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}
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anetNonBlock(Modes.aneterr, fd);
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anetNonBlock(Modes.aneterr, fd);
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c = malloc(sizeof(*c));
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c = (struct client *) malloc(sizeof(*c));
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c->service = services[j];
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c->service = services[j];
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c->fd = fd;
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c->fd = fd;
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c->buflen = 0;
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c->buflen = 0;
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@ -2183,7 +2187,7 @@ int decodeHexMessage(struct client *c) {
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char *aircraftsToJson(int *len) {
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char *aircraftsToJson(int *len) {
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struct aircraft *a = Modes.aircrafts;
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struct aircraft *a = Modes.aircrafts;
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int buflen = 1024; /* The initial buffer is incremented as needed. */
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int buflen = 1024; /* The initial buffer is incremented as needed. */
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char *buf = malloc(buflen), *p = buf;
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char *buf = (char *) malloc(buflen), *p = buf;
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int l;
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int l;
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l = snprintf(p,buflen,"[\n");
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l = snprintf(p,buflen,"[\n");
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@ -2193,8 +2197,8 @@ char *aircraftsToJson(int *len) {
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/* Convert units to metric if --metric was specified. */
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/* Convert units to metric if --metric was specified. */
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if (Modes.metric) {
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if (Modes.metric) {
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altitude /= 3.2828;
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altitude = (int) (altitude / 3.2828);
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speed *= 1.852;
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speed = (int) (speed * 1.852);
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}
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}
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if (a->lat != 0 && a->lon != 0) {
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if (a->lat != 0 && a->lon != 0) {
|
||||||
|
@ -2209,7 +2213,7 @@ char *aircraftsToJson(int *len) {
|
||||||
if (buflen < 256) {
|
if (buflen < 256) {
|
||||||
int used = p-buf;
|
int used = p-buf;
|
||||||
buflen += 1024; /* Our increment. */
|
buflen += 1024; /* Our increment. */
|
||||||
buf = realloc(buf,used+buflen);
|
buf = (char *) realloc(buf,used+buflen);
|
||||||
p = buf+used;
|
p = buf+used;
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
@ -2283,7 +2287,7 @@ int handleHTTPRequest(struct client *c) {
|
||||||
if (stat("gmap.html",&sbuf) != -1 &&
|
if (stat("gmap.html",&sbuf) != -1 &&
|
||||||
(fd = open("gmap.html",O_RDONLY)) != -1)
|
(fd = open("gmap.html",O_RDONLY)) != -1)
|
||||||
{
|
{
|
||||||
content = malloc(sbuf.st_size);
|
content = (char *) malloc(sbuf.st_size);
|
||||||
if (read(fd,content,sbuf.st_size) == -1) {
|
if (read(fd,content,sbuf.st_size) == -1) {
|
||||||
snprintf(content,sbuf.st_size,"Error reading from file: %s",
|
snprintf(content,sbuf.st_size,"Error reading from file: %s",
|
||||||
strerror(errno));
|
strerror(errno));
|
||||||
|
@ -2486,11 +2490,11 @@ int main(int argc, char **argv) {
|
||||||
if (!strcmp(argv[j],"--device-index") && more) {
|
if (!strcmp(argv[j],"--device-index") && more) {
|
||||||
Modes.dev_index = atoi(argv[++j]);
|
Modes.dev_index = atoi(argv[++j]);
|
||||||
} else if (!strcmp(argv[j],"--gain") && more) {
|
} else if (!strcmp(argv[j],"--gain") && more) {
|
||||||
Modes.gain = atof(argv[++j])*10; /* Gain is in tens of DBs */
|
Modes.gain = (int) atof(argv[++j])*10; /* Gain is in tens of DBs */
|
||||||
} else if (!strcmp(argv[j],"--enable-agc")) {
|
} else if (!strcmp(argv[j],"--enable-agc")) {
|
||||||
Modes.enable_agc++;
|
Modes.enable_agc++;
|
||||||
} else if (!strcmp(argv[j],"--freq") && more) {
|
} else if (!strcmp(argv[j],"--freq") && more) {
|
||||||
Modes.freq = strtoll(argv[++j],NULL,10);
|
Modes.freq = (int) strtoll(argv[++j],NULL,10);
|
||||||
} else if (!strcmp(argv[j],"--ifile") && more) {
|
} else if (!strcmp(argv[j],"--ifile") && more) {
|
||||||
Modes.filename = strdup(argv[++j]);
|
Modes.filename = strdup(argv[++j]);
|
||||||
} else if (!strcmp(argv[j],"--no-fix")) {
|
} else if (!strcmp(argv[j],"--no-fix")) {
|
||||||
|
|
Loading…
Reference in a new issue