mirror of https://github.com/ARMmbed/mbed-os.git
Fix astyle format issue
parent
28e44ac6f8
commit
31bc95a742
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@ -131,13 +131,14 @@ void Kinetis_EMAC::tx_reclaim()
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TXLockMutex.lock();
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// Traverse all descriptors, looking for the ones modified by the uDMA
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while((tx_consume_index != tx_produce_index) &&
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while ((tx_consume_index != tx_produce_index) &&
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(!(g_handle.txBdDirty->control & ENET_BUFFDESCRIPTOR_TX_READY_MASK))) {
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memory_manager->free(tx_buff[tx_consume_index % ENET_TX_RING_LEN]);
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if (g_handle.txBdDirty->control & ENET_BUFFDESCRIPTOR_TX_WRAP_MASK)
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if (g_handle.txBdDirty->control & ENET_BUFFDESCRIPTOR_TX_WRAP_MASK) {
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g_handle.txBdDirty = g_handle.txBdBase;
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else
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} else {
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g_handle.txBdDirty++;
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}
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tx_consume_index += 1;
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xTXDCountSem.release();
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@ -166,8 +167,7 @@ void Kinetis_EMAC::tx_isr()
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void Kinetis_EMAC::ethernet_callback(ENET_Type *base, enet_handle_t *handle, enet_event_t event, void *param)
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{
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Kinetis_EMAC *enet = static_cast<Kinetis_EMAC *>(param);
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switch (event)
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{
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switch (event) {
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case kENET_RxEvent:
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enet->rx_isr();
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break;
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@ -193,13 +193,15 @@ bool Kinetis_EMAC::low_level_init_successful()
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// Allocate RX descriptors
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rx_desc_start_addr = (uint8_t *)calloc(1, sizeof(enet_rx_bd_struct_t) * ENET_RX_RING_LEN + ENET_BUFF_ALIGNMENT);
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if(!rx_desc_start_addr)
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if (!rx_desc_start_addr) {
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return false;
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}
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// Allocate TX descriptors
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tx_desc_start_addr = (uint8_t *)calloc(1, sizeof(enet_tx_bd_struct_t) * ENET_TX_RING_LEN + ENET_BUFF_ALIGNMENT);
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if(!tx_desc_start_addr)
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if (!tx_desc_start_addr) {
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return false;
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}
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rx_desc_start_addr = (uint8_t *)ENET_ALIGN(rx_desc_start_addr, ENET_BUFF_ALIGNMENT);
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tx_desc_start_addr = (uint8_t *)ENET_ALIGN(tx_desc_start_addr, ENET_BUFF_ALIGNMENT);
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@ -207,10 +209,11 @@ bool Kinetis_EMAC::low_level_init_successful()
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/* Create buffers for each receive BD */
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for (i = 0; i < ENET_RX_RING_LEN; i++) {
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rx_buff[i] = memory_manager->alloc_heap(ENET_ETH_MAX_FLEN, ENET_BUFF_ALIGNMENT);
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if (NULL == rx_buff[i])
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if (NULL == rx_buff[i]) {
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return false;
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}
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rx_ptr[i] = (uint32_t*)memory_manager->get_ptr(rx_buff[i]);
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rx_ptr[i] = (uint32_t *)memory_manager->get_ptr(rx_buff[i]);
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}
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tx_consume_index = tx_produce_index = 0;
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@ -223,7 +226,7 @@ bool Kinetis_EMAC::low_level_init_successful()
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0,
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(volatile enet_rx_bd_struct_t *)rx_desc_start_addr,
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(volatile enet_tx_bd_struct_t *)tx_desc_start_addr,
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(uint8_t *)&rx_ptr,
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(uint8_t *) &rx_ptr,
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NULL,
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};
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@ -300,9 +303,9 @@ emac_mem_buf_t *Kinetis_EMAC::low_level_input(int idx)
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}
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rx_buff[idx] = temp_rxbuf;
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rx_ptr[idx] = (uint32_t*)memory_manager->get_ptr(rx_buff[idx]);
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rx_ptr[idx] = (uint32_t *)memory_manager->get_ptr(rx_buff[idx]);
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update_read_buffer((uint8_t*)rx_ptr[idx]);
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update_read_buffer((uint8_t *)rx_ptr[idx]);
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}
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#ifdef LOCK_RX_THREAD
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@ -335,12 +338,12 @@ void Kinetis_EMAC::input(int idx)
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*
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* \param[in] pvParameters pointer to the interface data
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*/
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void Kinetis_EMAC::thread_function(void* pvParameters)
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void Kinetis_EMAC::thread_function(void *pvParameters)
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{
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struct Kinetis_EMAC *kinetis_enet = static_cast<Kinetis_EMAC *>(pvParameters);
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for (;;) {
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uint32_t flags = osThreadFlagsWait(FLAG_RX|FLAG_TX, osFlagsWaitAny, osWaitForever);
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uint32_t flags = osThreadFlagsWait(FLAG_RX | FLAG_TX, osFlagsWaitAny, osWaitForever);
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MBED_ASSERT(!(flags & osFlagsError));
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@ -542,7 +545,7 @@ bool Kinetis_EMAC::get_hwaddr(uint8_t *addr) const
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void Kinetis_EMAC::set_hwaddr(const uint8_t *addr)
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{
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memcpy(hwaddr, addr, sizeof hwaddr);
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ENET_SetMacAddr(ENET, const_cast<uint8_t*>(addr));
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ENET_SetMacAddr(ENET, const_cast<uint8_t *>(addr));
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}
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void Kinetis_EMAC::set_link_input_cb(emac_link_input_cb_t input_cb)
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@ -587,13 +590,15 @@ void Kinetis_EMAC::set_memory_manager(EMACMemoryManager &mem_mngr)
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}
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Kinetis_EMAC &Kinetis_EMAC::get_instance() {
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Kinetis_EMAC &Kinetis_EMAC::get_instance()
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{
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static Kinetis_EMAC emac;
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return emac;
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}
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// Weak so a module can override
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MBED_WEAK EMAC &EMAC::get_default_instance() {
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MBED_WEAK EMAC &EMAC::get_default_instance()
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{
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return Kinetis_EMAC::get_instance();
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}
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@ -133,13 +133,14 @@ void Kinetis_EMAC::tx_reclaim()
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TXLockMutex.lock();
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// Traverse all descriptors, looking for the ones modified by the uDMA
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while((tx_consume_index != tx_produce_index) &&
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while ((tx_consume_index != tx_produce_index) &&
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(!(g_handle.txBdDirty[0]->control & ENET_BUFFDESCRIPTOR_TX_READY_MASK))) {
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memory_manager->free(tx_buff[tx_consume_index % ENET_TX_RING_LEN]);
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if (g_handle.txBdDirty[0]->control & ENET_BUFFDESCRIPTOR_TX_WRAP_MASK)
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if (g_handle.txBdDirty[0]->control & ENET_BUFFDESCRIPTOR_TX_WRAP_MASK) {
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g_handle.txBdDirty[0] = g_handle.txBdBase[0];
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else
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} else {
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g_handle.txBdDirty[0]++;
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}
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tx_consume_index += 1;
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xTXDCountSem.release();
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@ -168,8 +169,7 @@ void Kinetis_EMAC::tx_isr()
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void Kinetis_EMAC::ethernet_callback(ENET_Type *base, enet_handle_t *handle, enet_event_t event, void *param)
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{
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Kinetis_EMAC *enet = static_cast<Kinetis_EMAC *>(param);
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switch (event)
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{
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switch (event) {
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case kENET_RxEvent:
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enet->rx_isr();
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break;
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@ -200,10 +200,11 @@ bool Kinetis_EMAC::low_level_init_successful()
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for (i = 0; i < ENET_RX_RING_LEN; i++) {
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rx_buff[i] = memory_manager->alloc_heap(ENET_ALIGN(ENET_ETH_MAX_FLEN, ENET_BUFF_ALIGNMENT),
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ENET_BUFF_ALIGNMENT);
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if (NULL == rx_buff[i])
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if (NULL == rx_buff[i]) {
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return false;
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}
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rx_ptr[i] = (uint32_t*)memory_manager->get_ptr(rx_buff[i]);
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rx_ptr[i] = (uint32_t *)memory_manager->get_ptr(rx_buff[i]);
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SCB_InvalidateDCache_by_Addr(rx_ptr[i], ENET_ALIGN(ENET_ETH_MAX_FLEN, ENET_BUFF_ALIGNMENT));
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}
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@ -217,7 +218,7 @@ bool Kinetis_EMAC::low_level_init_successful()
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0,
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(volatile enet_rx_bd_struct_t *)rx_desc_start_addr,
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(volatile enet_tx_bd_struct_t *)tx_desc_start_addr,
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(uint8_t *)&rx_ptr,
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(uint8_t *) &rx_ptr,
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NULL,
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};
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@ -296,10 +297,10 @@ emac_mem_buf_t *Kinetis_EMAC::low_level_input(int idx)
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}
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rx_buff[idx] = temp_rxbuf;
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rx_ptr[idx] = (uint32_t*)memory_manager->get_ptr(rx_buff[idx]);
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rx_ptr[idx] = (uint32_t *)memory_manager->get_ptr(rx_buff[idx]);
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SCB_InvalidateDCache_by_Addr(rx_ptr[idx], ENET_ALIGN(ENET_ETH_MAX_FLEN, ENET_BUFF_ALIGNMENT));
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update_read_buffer((uint8_t*)rx_ptr[idx]);
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update_read_buffer((uint8_t *)rx_ptr[idx]);
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}
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#ifdef LOCK_RX_THREAD
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@ -332,12 +333,12 @@ void Kinetis_EMAC::input(int idx)
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*
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* \param[in] pvParameters pointer to the interface data
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*/
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void Kinetis_EMAC::thread_function(void* pvParameters)
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void Kinetis_EMAC::thread_function(void *pvParameters)
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{
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struct Kinetis_EMAC *kinetis_enet = static_cast<Kinetis_EMAC *>(pvParameters);
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for (;;) {
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uint32_t flags = osThreadFlagsWait(FLAG_RX|FLAG_TX, osFlagsWaitAny, osWaitForever);
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uint32_t flags = osThreadFlagsWait(FLAG_RX | FLAG_TX, osFlagsWaitAny, osWaitForever);
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MBED_ASSERT(!(flags & osFlagsError));
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@ -546,7 +547,7 @@ bool Kinetis_EMAC::get_hwaddr(uint8_t *addr) const
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void Kinetis_EMAC::set_hwaddr(const uint8_t *addr)
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{
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memcpy(hwaddr, addr, sizeof hwaddr);
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ENET_SetMacAddr(ENET, const_cast<uint8_t*>(addr));
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ENET_SetMacAddr(ENET, const_cast<uint8_t *>(addr));
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}
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void Kinetis_EMAC::set_link_input_cb(emac_link_input_cb_t input_cb)
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@ -591,13 +592,15 @@ void Kinetis_EMAC::set_memory_manager(EMACMemoryManager &mem_mngr)
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}
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Kinetis_EMAC &Kinetis_EMAC::get_instance() {
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Kinetis_EMAC &Kinetis_EMAC::get_instance()
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{
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static Kinetis_EMAC emac;
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return emac;
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}
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// Weak so a module can override
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MBED_WEAK EMAC &EMAC::get_default_instance() {
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MBED_WEAK EMAC &EMAC::get_default_instance()
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{
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return Kinetis_EMAC::get_instance();
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}
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@ -145,8 +145,7 @@ void LPC546XX_EMAC::ethernet_callback(ENET_Type *base, enet_handle_t *handle, en
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{
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LPC546XX_EMAC *enet = static_cast<LPC546XX_EMAC *>(param);
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switch (event)
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{
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switch (event) {
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case kENET_RxIntEvent:
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enet->rx_isr();
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break;
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@ -219,8 +218,9 @@ bool LPC546XX_EMAC::low_level_init_successful()
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/* Create buffers for each receive BD */
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for (i = 0; i < ENET_RX_RING_LEN; i++) {
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rx_buff[i] = memory_manager->alloc_heap(buffCfg.rxBuffSizeAlign, ENET_BUFF_ALIGNMENT);
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if (NULL == rx_buff[i])
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if (NULL == rx_buff[i]) {
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return false;
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}
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rx_ptr[i] = (uint32_t)memory_manager->get_ptr(rx_buff[i]);
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}
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@ -293,7 +293,7 @@ emac_mem_buf_t *LPC546XX_EMAC::low_level_input()
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rx_buff[rxBdRing->rxGenIdx] = temp_rxbuf;
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rx_ptr[rxBdRing->rxGenIdx] = (uint32_t)memory_manager->get_ptr(rx_buff[rxBdRing->rxGenIdx]);
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update_read_buffer(bdPtr, (uint8_t*)rx_ptr[rxBdRing->rxGenIdx]);
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update_read_buffer(bdPtr, (uint8_t *)rx_ptr[rxBdRing->rxGenIdx]);
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}
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#ifdef LOCK_RX_THREAD
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@ -324,7 +324,7 @@ void LPC546XX_EMAC::input()
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*
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* \param[in] pvParameters pointer to the interface data
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*/
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void LPC546XX_EMAC::thread_function(void* pvParameters)
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void LPC546XX_EMAC::thread_function(void *pvParameters)
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{
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struct LPC546XX_EMAC *lpc_enet = static_cast<LPC546XX_EMAC *>(pvParameters);
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@ -366,8 +366,7 @@ void LPC546XX_EMAC::packet_rx()
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}
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/* Set command for rx when it is suspend. */
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if (suspend)
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{
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if (suspend) {
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ENET->DMA_CH[0].DMA_CHX_RXDESC_TAIL_PTR = ENET->DMA_CH[0].DMA_CHX_RXDESC_TAIL_PTR;
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}
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}
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@ -440,7 +439,8 @@ bool LPC546XX_EMAC::link_out(emac_mem_buf_t *buf)
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#define STATE_UNKNOWN (-1)
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int phy_link_status(void) {
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int phy_link_status(void)
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{
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bool connection_status;
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uint32_t phyAddr = 0;
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@ -538,7 +538,7 @@ bool LPC546XX_EMAC::get_hwaddr(uint8_t *addr) const
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void LPC546XX_EMAC::set_hwaddr(const uint8_t *addr)
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{
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memcpy(hwaddr, addr, sizeof hwaddr);
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ENET_SetMacAddr(ENET, const_cast<uint8_t*>(addr));
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ENET_SetMacAddr(ENET, const_cast<uint8_t *>(addr));
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}
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void LPC546XX_EMAC::set_link_input_cb(emac_link_input_cb_t input_cb)
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@ -585,13 +585,15 @@ void LPC546XX_EMAC::set_memory_manager(EMACMemoryManager &mem_mngr)
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}
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LPC546XX_EMAC &LPC546XX_EMAC::get_instance() {
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LPC546XX_EMAC &LPC546XX_EMAC::get_instance()
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{
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static LPC546XX_EMAC emac;
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return emac;
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}
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// Weak so a module can override
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MBED_WEAK EMAC &EMAC::get_default_instance() {
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MBED_WEAK EMAC &EMAC::get_default_instance()
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{
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return LPC546XX_EMAC::get_instance();
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}
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@ -886,7 +886,7 @@ bool STM32_EMAC::power_up()
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/* Worker thread */
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#if MBED_CONF_MBED_TRACE_ENABLE
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thread = create_new_thread("stm32_emac_thread", &STM32_EMAC::thread_function, this, MBED_CONF_STM32_EMAC_THREAD_STACKSIZE*2, THREAD_PRIORITY, &thread_cb);
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thread = create_new_thread("stm32_emac_thread", &STM32_EMAC::thread_function, this, MBED_CONF_STM32_EMAC_THREAD_STACKSIZE * 2, THREAD_PRIORITY, &thread_cb);
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#else
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thread = create_new_thread("stm32_emac_thread", &STM32_EMAC::thread_function, this, MBED_CONF_STM32_EMAC_THREAD_STACKSIZE, THREAD_PRIORITY, &thread_cb);
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#endif
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