type stringclasses 5
values | content stringlengths 9 163k |
|---|---|
defines | #define ARG62 ((jbyte)99) |
defines | #define RES6 ((jbyte)(ARG5 + ARG62)) |
functions | jbyte callNI(JNIEnv *env, jclass par_cl, jmethodID mid, ...)
{
va_list args;
jbyte result;
va_start(args, mid);
result = (*env)->CallStaticByteMethodV(env, par_cl, mid, args);
va_end(args);
return result;
} |
functions | JNICALL
Java_org_apache_harmony_vts_test_vm_jni_static_1methods_CallStaticByteMethodVTest_nativeExecute
(JNIEnv *env, jobject this_object, jobject tc, jobject ntc)
{
jclass bc, class1, class2;
char *sig1 = "(B)B";
char *sig2 = "(BB)B";
char *sig3 = "([B)B";
char *sig4 = "([B[B)B";
char *sig5... |
includes |
#include <stdio.h> |
includes | #include <stdlib.h> |
includes | #include <string.h> |
includes | #include <getopt.h> |
defines |
#define HTTP_1_0 "HTTP/1.0" |
defines | #define HTTP_1_1 "HTTP/1.1" |
defines | #define CHUNKED "chunked" |
defines | #define IDENTITY "identity" |
functions | void usage(const char * cmd)
{
printf("Usage: %s [options] [-c|-s] \n"
"Options:\n"
" -v \"HTTP/1.0\" | \"HTTP/1.1\" HTTP version\n"
" -t \"chunked\" | \"identity\" Client Transfer-Encoding\n"
" -i iterations Set number of iteration... |
functions | int
client_test(
http_test_info_t * info,
int timer)
{
int rc = 0;
globus_result_t result;
int header_cnt = 0;
char content_length_buffer[64];
globus_xio_http_header_t ... |
functions | int
server_test(
http_test_info_t * info,
int timer)
{
int rc;
globus_result_t result;
http_test_server_t test_server;
globus_utp_start_timer(timer);
result = http_test_server_init(
&test_server,
... |
functions | void
globus_l_xio_test_server_request_callback(
void * user_arg,
globus_result_t result,
const char * method,
const char * uri,
globus_xio_http_version_t http_version,
globus_hashtable_t ... |
functions | globus_result_t
globus_l_xio_test_write_buffer(
globus_xio_handle_t handle,
globus_byte_t * msg,
globus_size_t msg_size,
globus_xio_driver_t http_driver)
{
globus_size_t nbytes;
globus_result_t ... |
functions | globus_result_t
globus_l_xio_test_read_buffer(
globus_xio_handle_t handle,
globus_byte_t * msg,
globus_size_t msg_size)
{
globus_size_t nbytes;
globus_result_t result = GLOBUS_SUCCESS;
globus_byte... |
functions | void
globus_l_xio_test_server_handle_request(
void * ignored)
{
} |
main | int
main(
int argc,
char * argv[])
{
int rc;
globus_bool_t server = GLOBUS_FALSE;
char gets_buffer[1024];
http_test_info_t * info;
performance_t... |
functions | esp_err_t esp_blufi_register_callbacks(esp_blufi_callbacks_t *callbacks)
{
ESP_BLE_HOST_STATUS_CHECK(ESP_BLE_HOST_STATUS_ENABLED);
if (callbacks == NULL) {
return ESP_FAIL;
} |
functions | esp_err_t esp_blufi_send_wifi_conn_report(wifi_mode_t opmode, esp_blufi_sta_conn_state_t sta_conn_state, uint8_t softap_conn_num, esp_blufi_extra_info_t *extra_info)
{
btc_msg_t msg;
btc_blufi_args_t arg;
ESP_BLE_HOST_STATUS_CHECK(ESP_BLE_HOST_STATUS_ENABLED);
msg.sig = BTC_SIG_API_CALL;
msg.pid =... |
functions | esp_err_t esp_blufi_send_wifi_list(uint16_t apCount, esp_blufi_ap_record_t *list)
{
btc_msg_t msg;
btc_blufi_args_t arg;
ESP_BLE_HOST_STATUS_CHECK(ESP_BLE_HOST_STATUS_ENABLED);
msg.sig = BTC_SIG_API_CALL;
msg.pid = BTC_PID_BLUFI;
msg.act = BTC_BLUFI_ACT_SEND_WIFI_LIST;
arg.wifi_list.apCoun... |
functions | esp_err_t esp_blufi_profile_init(void)
{
btc_msg_t msg;
ESP_BLE_HOST_STATUS_CHECK(ESP_BLE_HOST_STATUS_ENABLED);
msg.sig = BTC_SIG_API_CALL;
msg.pid = BTC_PID_BLUFI;
msg.act = BTC_BLUFI_ACT_INIT;
return (btc_transfer_context(&msg, NULL, 0, NULL) == BT_STATUS_SUCCESS ? ESP_OK : ESP_FAIL);
} |
functions | esp_err_t esp_blufi_profile_deinit(void)
{
btc_msg_t msg;
ESP_BLE_HOST_STATUS_CHECK(ESP_BLE_HOST_STATUS_ENABLED);
msg.sig = BTC_SIG_API_CALL;
msg.pid = BTC_PID_BLUFI;
msg.act = BTC_BLUFI_ACT_DEINIT;
return (btc_transfer_context(&msg, NULL, 0, NULL) == BT_STATUS_SUCCESS ? ESP_OK : ESP_FAIL);
} |
functions | uint16_t esp_blufi_get_version(void)
{
return btc_blufi_get_version();
} |
functions | esp_err_t esp_blufi_send_error_info(esp_blufi_error_state_t state)
{
btc_msg_t msg;
btc_blufi_args_t arg;
ESP_BLE_HOST_STATUS_CHECK(ESP_BLE_HOST_STATUS_ENABLED);
msg.sig = BTC_SIG_API_CALL;
msg.pid = BTC_PID_BLUFI;
msg.act = BTC_BLUFI_ACT_SEND_ERR_INFO;
arg.blufi_err_infor.state = state;
... |
functions | esp_err_t esp_blufi_send_custom_data(uint8_t *data, uint32_t data_len)
{
btc_msg_t msg;
btc_blufi_args_t arg;
if(data == NULL || data_len == 0) {
return ESP_ERR_INVALID_ARG;
} |
includes | #include <stdio.h> |
includes | #include <stdlib.h> |
functions | word_t mem_load(vaddr_t va) {
vpn_t vpn;
pfn_t pfn, offset;
word_t data;
vpn = VADDR_PAGENUM(va);
pfn = tlb_lookup(vpn, 0);
offset = VADDR_OFFSET(va);
data = memory[pfn * page_size + offset];
// printf("physical address: %5.5u\n", pfn * page_size + offset);
printf("LOADING %3.3hu as data fr... |
functions | void mem_store(vaddr_t va, word_t data) {
vpn_t vpn;
pfn_t pfn, offset;
vpn = VADDR_PAGENUM(va);
pfn = tlb_lookup(vpn, 1);
offset = VADDR_OFFSET(va);
// printf("physical address: %5.5u\n", pfn * page_size + offset);
printf("STORING %3.3u as data in virtual address %5.5u.\nVirtual Address informa... |
functions | void mem_init(void) {
if ((memory = calloc(mem_size, sizeof(unsigned char))) == NULL) {
PERROR("calloc");
exit(EXIT_FAILURE);
} |
functions | void mem_free(void) {
free(memory);
} |
defines |
#define NRF_CE_HIGH() PTE28_OUT=1 |
defines | #define NRF_CE_LOW() PTE28_OUT=0 //CEÖÃµÍ |
defines | #define NRF_PCSN_LOW() PTA14_OUT=0 |
defines | #define NRF_PCSN_HIGH() PTA14_OUT=1 |
defines | #define NRF_Read_IRQ() PTE27_IN |
defines |
#define TX_ADR_WIDTH ADR_WIDTH //·¢É䵨ַ¿í¶È |
defines | #define TX_PLOAD_WIDTH MAX_ONCE_TX_NUM //·¢ÉäÊý¾ÝͨµÀÓÐЧÊý¾Ý¿í¶È0~32Byte |
defines |
#define RX_ADR_WIDTH ADR_WIDTH |
defines | #define RX_PLOAD_WIDTH MAX_ONCE_TX_NUM |
defines |
#define CHANAL 40 //ƵµÀÑ¡Ôñ |
defines | #define NRF_READ_REG 0x00 // Define read command to register |
defines | #define NRF_WRITE_REG 0x20 // Define write command to register |
defines | #define RD_RX_PLOAD 0x61 // Define RX payload register address |
defines | #define WR_TX_PLOAD 0xA0 // Define TX payload register address |
defines | #define FLUSH_TX 0xE1 // Define flush TX register command |
defines | #define FLUSH_RX 0xE2 // Define flush RX register command |
defines | #define REUSE_TX_PL 0xE3 // Define reuse TX payload register command |
defines | #define NOP 0xFF // Define No Operation, might be used to read status register |
defines | #define CONFIG 0x00 // 'Config' register address |
defines | #define EN_AA 0x01 // 'Enable Auto Acknowledgment' register address |
defines | #define EN_RXADDR 0x02 // 'Enabled RX addresses' register address |
defines | #define SETUP_AW 0x03 // 'Setup address width' register address |
defines | #define SETUP_RETR 0x04 // 'Setup Auto. Retrans' register address |
defines | #define RF_CH 0x05 // 'RF channel' register address |
defines | #define RF_SETUP 0x06 // 'RF setup' register address |
defines | #define STATUS 0x07 // 'Status' register address |
defines | #define OBSERVE_TX 0x08 // 'Observe TX' register address |
defines | #define CD 0x09 // 'Carrier Detect' register address |
defines | #define RX_ADDR_P0 0x0A // 'RX address pipe0' register address |
defines | #define RX_ADDR_P1 0x0B // 'RX address pipe1' register address |
defines | #define RX_ADDR_P2 0x0C // 'RX address pipe2' register address |
defines | #define RX_ADDR_P3 0x0D // 'RX address pipe3' register address |
defines | #define RX_ADDR_P4 0x0E // 'RX address pipe4' register address |
defines | #define RX_ADDR_P5 0x0F // 'RX address pipe5' register address |
defines | #define TX_ADDR 0x10 // 'TX address' register address |
defines | #define RX_PW_P0 0x11 // 'RX payload width, pipe0' register address |
defines | #define RX_PW_P1 0x12 // 'RX payload width, pipe1' register address |
defines | #define RX_PW_P2 0x13 // 'RX payload width, pipe2' register address |
defines | #define RX_PW_P3 0x14 // 'RX payload width, pipe3' register address |
defines | #define RX_PW_P4 0x15 // 'RX payload width, pipe4' register address |
defines | #define RX_PW_P5 0x16 // 'RX payload width, pipe5' register address |
defines | #define FIFO_STATUS 0x17 // 'FIFO Status Register' register address |
defines | #define NRF_CHECH_DATA 0xC2 |
functions | void NRF_Init(void)
{
//ÅäÖÃNRF¹Ü½Å¸´ÓÃ
spi_init(NRF_SPI,MASTER); //³õʼ»¯SPI,Ö÷»úģʽ
gpio_init(PORTE,28, GPO,LOW); //³õʼ»¯CE£¬Ä¬ÈϽøÈë´ý»úģʽ
//gpio_init(PORTE,27, GPI,LOW); //³õʼ»¯IRQ¹Ü½ÅΪÊäÈë
gpio_init(PORTA,14, GPO,HIGH); //³õʼ»¯PCSN¹Ü½ÅΪÊä... |
functions | u8 NRF_WriteReg(u8 reg,u8 dat)
{
u8 status;
NRF_CE_LOW();
/*ÖõÍCSN£¬Ê¹ÄÜSPI´«Êä*/
NRF_PCSN_LOW();
/*·¢ËÍÃüÁî¼°¼Ä´æÆ÷ºÅ */
status = NRF_RW(reg);
/*Ïò¼Ä´æÆ÷дÈëÊý¾Ý*/
NRF_RW(dat);
/*CSNÀ¸ß£¬Íê³É*/
NRF_PCSN_HIGH();
/*·µ»Ø×´Ì¬¼Ä´æÆ÷µÄÖµ*/
return(status);
} |
functions | u8 NRF_ReadReg(u8 reg)
{
u8 reg_val;
NRF_CE_LOW();
/*ÖõÍCSN£¬Ê¹ÄÜSPI´«Êä*/
NRF_PCSN_LOW();
/*·¢ËͼĴæÆ÷ºÅ*/
NRF_RW(reg);
/*¶ÁÈ¡¼Ä´æÆ÷µÄÖµ */
reg_val = NRF_RW(NOP);
/*CSNÀ¸ß£¬Íê³É*/
NRF_PCSN_HIGH();
return reg_val;
} |
functions | u8 NRF_WriteBuf(u8 reg ,u8 *pBuf,u32 len)
{
u8 status;
/*ÖõÍCSN£¬Ê¹ÄÜSPI´«Êä*/
NRF_PCSN_LOW();
/*·¢ËͼĴæÆ÷ºÅ*/
status= NRF_RW(reg); //continue,¼´²»»áÈ¡ÏûƬѡ
/*Ïò»º³åÇøÐ´ÈëÊý¾Ý*/
spi_send(NRF_SPI,pBuf,len);
/*CSNÀ¸ß£¬Íê³É*/
NRF_PCSN_HIGH();
return (stat... |
functions | u8 NRF_ReadBuf(u8 reg,u8 *pBuf,u8 len)
{
u8 status, byte_cnt;
// u8 time=0xff;
NRF_CE_LOW();
/*ÖõÍCSN£¬Ê¹ÄÜSPI´«Êä*/
NRF_PCSN_LOW();
for(byte_cnt = 0 ;byte_cnt < len;byte_cnt++)
{
pBuf[byte_cnt] = NOP;
} |
functions | u8 NRF_RW(u8 dat)
{
spi_WR(NRF_SPI,&dat,1);
return dat;
} |
functions | u8 NRF_Check(void)
{
u8 buf[5]={NRF_CHECH_DATA,NRF_CHECH_DATA,NRF_CHECH_DATA,NRF_CHECH_DATA,NRF_CHECH_DATA} |
functions | u8 NRF_TX_Dat_Once(u8 *txbuf)
{
u8 state;
/*ceΪµÍ£¬½øÈë´ý»úģʽ1*/
NRF_CE_LOW();
/*дÊý¾Ýµ½TX BUF ×î´ó 32¸ö×Ö½Ú*/
NRF_WriteBuf(WR_TX_PLOAD,txbuf,MAX_ONCE_TX_NUM);
/*CEΪ¸ß£¬txbuf·Ç¿Õ£¬·¢ËÍÊý¾Ý°ü */
NRF_CE_HIGH();
/*µÈ´ý·¢ËÍÍê³ÉÖÐ¶Ï */
while(NRF_Read_IR... |
functions | u8 NRF_Tx_Dat(u8 *txbuf,u32 len)
{
u8 state;
u32 L;
if( nrf_mode != TX_MODE)
{
NRF_TX_Mode();
} |
functions | Õû
while(L--)
{
state = NRF_TX_Dat_Once(txbuf);
if( !(state & TX_DS)) //Èç¹û·¢ËͲ»³É¹¦£¬Ôò½áÊø
{
break; //Ìø³öwhileÑ»·
} |
functions | void NRF_ISR_Tx_Dat(u8 *txbuf,u32 len)
{
u32 L = (len+ MAX_ONCE_TX_NUM -1)/MAX_ONCE_TX_NUM;
if( nrf_mode != TX_MODE)
{
NRF_TX_Mode();
} |
functions | void NRF_ISR_Tx_Handler(void)
{
if(isr_addr == NULL)
{
return; //ÎÞЧ
} |
functions | void nrf_cpy( u8 * dst, u8 * src, u32 count)
{
u32 n = (count + 7 ) / 8 ;
switch (count % 8 ) {
case 0 : do { * dst ++ = * src ++ ;
case 7 : * dst ++ = * src ++ ;
case 6 : * dst ++ = * src ++ ;
case 5 : * dst ++ = * src ++ ;
case 4 : * ds... |
functions | void NRF_ISR_Tx_Dat_Once(void)
{
if(isr_L > 0)
{
/*ceΪµÍ£¬½øÈë´ý»úģʽ1*/
NRF_CE_LOW();
/*дÊý¾Ýµ½TX BUF ×î´ó 32¸ö×Ö½Ú*/
NRF_WriteBuf(WR_TX_PLOAD,(u8 *)isr_addr,MAX_ONCE_TX_NUM);
/*CEΪ¸ß£¬txbuf·Ç¿Õ£¬·¢ËÍÊý¾Ý°ü */
NRF_CE_HIGH();
isr_L--;
} |
functions | u8 NRF_ISR_Tx_State(void)
{
if( nrf_mode != TX_MODE)
{
return TX_ISR_NULL; //²»ÊÇ·¢ËÍģʽ£¬Ã»·¢ËÍ
} |
functions | void NRF_Handler(void)
{
if( nrf_mode == TX_MODE)
{
NRF_ISR_Tx_Handler();
} |
functions | else if( nrf_mode == RX_MODE )
{
NRF_ISR_Rx_Handler();
} |
functions | u8 NRF_Rx_Dat(u8 *rxbuf)
{
u8 state;
if( nrf_mode != RX_MODE)
{
NRF_RX_Mode();
} |
functions | void NRF_ISR_Rx_Handler(void)
{
u8 state;
NRF_CE_LOW(); //½øÈë´ý»ú״̬
/*¶ÁÈ¡status¼Ä´æÆ÷µÄÖµ */
state=NRF_ReadReg(STATUS);
/* Çå³ýÖжϱêÖ¾*/
NRF_WriteReg(NRF_WRITE_REG+STATUS,state);
if(re_flag == QUEUE_FULL) //ÂúÁ˾ÍÖ±½ÓÇåFIFO£¬Í˳ö
{
NRF_Write... |
functions | void NRF_ISR_Rx_rst()
{
front = 0;
rear =0;
re_flag = QUEUE_EMPTY;
} |
functions | u8 NRF_ISR_Rx_Dat(u8 *rxbuf)
{
if( nrf_mode != RX_MODE)
{
NRF_RX_Mode();
} |
functions | ÓÁÐ
if(front >= RX_ISR_FIFO_PACKET)
{
front=0; //ÖØÍ·¿ªÊ¼
} |
functions | void NRF_RX_Mode(void)
{
NRF_CE_LOW();
NRF_WriteReg(NRF_WRITE_REG+EN_AA,0x01); //ʹÄÜͨµÀ0µÄ×Ô¶¯Ó¦´ð
NRF_WriteReg(NRF_WRITE_REG+EN_RXADDR,0x01); //ʹÄÜͨµÀ0µÄ½ÓÊÕµØÖ·
NRF_WriteBuf(NRF_WRITE_REG+RX_ADDR_P0,RX_ADDRESS,RX_ADR_WIDTH);//дRX½ÚµãµØÖ·
NRF_Write... |
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