forked from ROMEO/obsw
874 lines
23 KiB
C
874 lines
23 KiB
C
/*
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* Copyright (C) 2007 - 2022 Xilinx, Inc.
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* Copyright (C) 2022 - 2024 Advanced Micro Devices, Inc.
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without modification,
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* are permitted provided that the following conditions are met:
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*
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* 1. Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright notice,
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* this list of conditions and the following disclaimer in the documentation
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* and/or other materials provided with the distribution.
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* 3. The name of the author may not be used to endorse or promote products
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* derived from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
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* SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
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* OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
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* IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
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* OF SUCH DAMAGE.
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*
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* This file is part of the lwIP TCP/IP stack.
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*
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*/
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#include "lwipopts.h"
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#include "xlwipconfig.h"
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#if !NO_SYS
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#include "FreeRTOS.h"
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#include "semphr.h"
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#include "timers.h"
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#include "lwip/timeouts.h"
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#endif
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#include <stdio.h>
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#include <string.h>
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#include "lwip/opt.h"
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#include "lwip/def.h"
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#include "lwip/mem.h"
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#include "lwip/pbuf.h"
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#include "lwip/sys.h"
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#include "lwip/stats.h"
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#include "netif/etharp.h"
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#include "netif/xadapter.h"
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#include "netif/xemacliteif.h"
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#include "xstatus.h"
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#include "netif/xpqueue.h"
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#include "xlwipconfig.h"
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#include "xparameters.h"
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#ifndef SDT
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#if XLWIP_CONFIG_INCLUDE_EMACLITE_ON_ZYNQ == 1
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#include "xscugic.h"
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#define INTC_DIST_BASE_ADDR XPAR_SCUGIC_DIST_BASEADDR
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#else
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#include "xintc.h"
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#endif
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#else
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#include "xinterrupt_wrap.h"
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#endif
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/* Define those to better describe your network interface. */
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#define IFNAME0 'x'
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#define IFNAME1 'e'
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/* Advertisement control register. */
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#define ADVERTISE_10HALF 0x0020 /* Try for 10mbps half-duplex */
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#define ADVERTISE_1000XFULL 0x0020 /* Try for 1000BASE-X full-duplex */
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#define ADVERTISE_10FULL 0x0040 /* Try for 10mbps full-duplex */
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#define ADVERTISE_1000XHALF 0x0040 /* Try for 1000BASE-X half-duplex */
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#define ADVERTISE_100HALF 0x0080 /* Try for 100mbps half-duplex */
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#define ADVERTISE_1000XPAUSE 0x0080 /* Try for 1000BASE-X pause */
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#define ADVERTISE_100FULL 0x0100 /* Try for 100mbps full-duplex */
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#define ADVERTISE_1000XPSE_ASYM 0x0100 /* Try for 1000BASE-X asym pause */
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#define ADVERTISE_100BASE4 0x0200 /* Try for 100mbps 4k packets */
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#define ADVERTISE_100_AND_10 (ADVERTISE_10FULL | ADVERTISE_100FULL | \
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ADVERTISE_10HALF | ADVERTISE_100HALF)
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#define ADVERTISE_100 (ADVERTISE_100FULL | ADVERTISE_100HALF)
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#define ADVERTISE_10 (ADVERTISE_10FULL | ADVERTISE_10HALF)
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#if XLWIP_CONFIG_INCLUDE_EMACLITE_ON_ZYNQ == 1
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#define EMACLITE_INTR_PRIORITY_SET_IN_GIC 0xA0
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#define TRIG_TYPE_RISING_EDGE_SENSITIVE 0x3
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#endif
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#define IEEE_CONTROL_REG_OFFSET 0
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#define IEEE_STATUS_REG_OFFSET 1
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#define IEEE_AUTONEGO_ADVERTISE_REG 4
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#define IEEE_PARTNER_ABILITIES_1_REG_OFFSET 5
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#define IEEE_PARTNER_ABILITIES_2_REG_OFFSET 8
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#define IEEE_PARTNER_ABILITIES_3_REG_OFFSET 10
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#define IEEE_1000_ADVERTISE_REG_OFFSET 9
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#define IEEE_CTRL_1GBPS_LINKSPEED_MASK 0x2040
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#define IEEE_CTRL_LINKSPEED_MASK 0x0040
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#define IEEE_CTRL_LINKSPEED_1000M 0x0040
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#define IEEE_CTRL_LINKSPEED_100M 0x2000
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#define IEEE_CTRL_LINKSPEED_10M 0x0000
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#define IEEE_CTRL_RESET_MASK 0x8000
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#define IEEE_CTRL_AUTONEGOTIATE_ENABLE 0x1000
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#define IEEE_STAT_AUTONEGOTIATE_CAPABLE 0x0008
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#define IEEE_STAT_AUTONEGOTIATE_COMPLETE 0x0020
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#define IEEE_STAT_AUTONEGOTIATE_RESTART 0x0200
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#define IEEE_STAT_1GBPS_EXTENSIONS 0x0100
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#define IEEE_AN1_ABILITY_MASK 0x1FE0
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#define IEEE_AN3_ABILITY_MASK_1GBPS 0x0C00
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#define IEEE_AN1_ABILITY_MASK_100MBPS 0x0380
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#define IEEE_AN1_ABILITY_MASK_10MBPS 0x0060
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#define PHY_DETECT_REG 1
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#define PHY_DETECT_MASK 0x1808
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/* Forward declarations. */
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static err_t xemacliteif_output(struct netif *netif, struct pbuf *p,
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const ip_addr_t *ipaddr);
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unsigned get_IEEE_phy_speed_emaclite(XEmacLite *xemaclitep);
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unsigned configure_IEEE_phy_speed_emaclite(XEmacLite *xemaclitep, unsigned speed);
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/* The payload from multiple pbufs is assembled into a single contiguous
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* area for transmission. Currently this is a global variable (it should really
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* belong in the per netif structure), but that is ok since this can be used
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* only in a protected context
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*/
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unsigned char xemac_tx_frame[XEL_MAX_FRAME_SIZE] __attribute__((aligned(64)));
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#if !NO_SYS
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extern u32 xInsideISR;
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#endif
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#ifndef XLWIP_CONFIG_INCLUDE_EMACLITE_ON_ZYNQ
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#if XPAR_INTC_0_HAS_FAST == 1
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/*********** Function Prototypes *********************************************/
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/*
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* Function prototypes of the functions used for registering Fast
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* Interrupt Handlers
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*/
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static void XEmacLite_FastInterruptHandler(void)
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__attribute__ ((fast_interrupt));
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/**************** Variable Declarations **************************************/
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/** Variables for Fast Interrupt handlers ***/
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XEmacLite *xemaclitep_fast;
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#endif
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#endif
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static void
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xemacif_recv_handler(void *arg) {
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struct xemac_s *xemac = (struct xemac_s *)(arg);
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xemacliteif_s *xemacliteif = (xemacliteif_s *)(xemac->state);
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XEmacLite *instance = xemacliteif->instance;
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struct pbuf *p;
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int len = 0;
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struct xtopology_t *xtopologyp = &xtopology[xemac->topology_index];
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#if !NO_SYS
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xInsideISR++;
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#endif
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#if XLWIP_CONFIG_INCLUDE_EMACLITE_ON_ZYNQ == 1
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#else
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#ifndef SDT
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XIntc_AckIntr(xtopologyp->intc_baseaddr, 1 << xtopologyp->intc_emac_intr);
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#endif
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#endif
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p = pbuf_alloc(PBUF_RAW, XEL_MAX_FRAME_SIZE, PBUF_POOL);
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if (!p) {
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#if LINK_STATS
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lwip_stats.link.memerr++;
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lwip_stats.link.drop++;
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#endif
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/* receive and just ignore the frame.
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* we need to receive the frame because otherwise emaclite will
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* not generate any other interrupts since it cannot receive,
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* and we do not actively poll the emaclite
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*/
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XEmacLite_Recv(instance, xemac_tx_frame);
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#if !NO_SYS
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xInsideISR--;
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#endif
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return;
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}
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/* receive the packet */
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len = XEmacLite_Recv(instance, p->payload);
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if (len == 0) {
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#if LINK_STATS
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lwip_stats.link.drop++;
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#endif
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pbuf_free(p);
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#if !NO_SYS
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xInsideISR--;
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#endif
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return;
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}
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/* store it in the receive queue, where it'll be processed by xemacif input thread */
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if (pq_enqueue(xemacliteif->recv_q, (void*)p) < 0) {
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#if LINK_STATS
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lwip_stats.link.memerr++;
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lwip_stats.link.drop++;
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#endif
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pbuf_free(p);
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#if !NO_SYS
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xInsideISR--;
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#endif
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return;
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}
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#if !NO_SYS
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sys_sem_signal(&xemac->sem_rx_data_available);
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xInsideISR--;
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#endif
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}
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int transmit_packet(XEmacLite *instancep, void *packet, unsigned len)
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{
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XStatus result = 0;
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/* there is space for a buffer, so transfer */
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result = XEmacLite_Send(instancep, packet, len);
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if (result != XST_SUCCESS) {
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return -1;
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}
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return 0;
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}
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/*
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* this function is always called with interrupts off
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* this function also assumes that there is space to send in the Emaclite buffer
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*/
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static err_t
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_unbuffered_low_level_output(XEmacLite *instancep, struct pbuf *p)
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{
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struct pbuf *q;
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int total_len = 0;
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#if ETH_PAD_SIZE
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pbuf_header(p, -ETH_PAD_SIZE); /* drop the padding word */
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#endif
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for(q = p, total_len = 0; q != NULL; q = q->next) {
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/* Send the data from the pbuf to the interface, one pbuf at a
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time. The size of the data in each pbuf is kept in the ->len
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variable. */
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memcpy(xemac_tx_frame + total_len, q->payload, q->len);
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total_len += q->len;
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}
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if (transmit_packet(instancep, xemac_tx_frame, total_len) < 0) {
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#if LINK_STATS
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lwip_stats.link.drop++;
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#endif
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}
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#if ETH_PAD_SIZE
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pbuf_header(p, ETH_PAD_SIZE); /* reclaim the padding word */
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#endif
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#if LINK_STATS
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lwip_stats.link.xmit++;
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#endif /* LINK_STATS */
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return ERR_OK;
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}
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/*
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* low_level_output():
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*
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* Should do the actual transmission of the packet. The packet is
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* contained in the pbuf that is passed to the function. This pbuf
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* might be chained.
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*
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*/
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static err_t
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low_level_output(struct netif *netif, struct pbuf *p)
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{
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SYS_ARCH_DECL_PROTECT(lev);
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struct xemac_s *xemac = (struct xemac_s *)(netif->state);
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xemacliteif_s *xemacliteif = (xemacliteif_s *)(xemac->state);
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XEmacLite *instance = xemacliteif->instance;
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struct pbuf *q;
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SYS_ARCH_PROTECT(lev);
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/* check if space is available to send */
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if (XEmacLite_TxBufferAvailable(instance) == TRUE) {
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if (pq_qlength(xemacliteif->send_q)) { /* send backlog */
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_unbuffered_low_level_output(instance, (struct pbuf *)pq_dequeue(xemacliteif->send_q));
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} else { /* send current */
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_unbuffered_low_level_output(instance, p);
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SYS_ARCH_UNPROTECT(lev);
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return ERR_OK;
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}
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}
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/* if we cannot send the packet immediately, then make a copy of the whole packet
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* into a separate pbuf and store it in send_q. We cannot enqueue the pbuf as is
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* since parts of the pbuf may be modified inside lwIP.
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*/
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q = pbuf_alloc(PBUF_RAW, p->tot_len, PBUF_POOL);
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if (!q) {
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#if LINK_STATS
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lwip_stats.link.drop++;
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#endif
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SYS_ARCH_UNPROTECT(lev);
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return ERR_MEM;
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}
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for (q->len = 0; p; p = p->next) {
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memcpy(q->payload + q->len, p->payload, p->len);
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q->len += p->len;
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}
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if (pq_enqueue(xemacliteif->send_q, (void *)q) < 0) {
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#if LINK_STATS
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lwip_stats.link.drop++;
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#endif
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SYS_ARCH_UNPROTECT(lev);
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return ERR_MEM;
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}
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SYS_ARCH_UNPROTECT(lev);
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return ERR_OK;
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}
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static void
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xemacif_send_handler(void *arg) {
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struct xemac_s *xemac = (struct xemac_s *)(arg);
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xemacliteif_s *xemacliteif = (xemacliteif_s *)(xemac->state);
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XEmacLite *instance = xemacliteif->instance;
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struct xtopology_t *xtopologyp = &xtopology[xemac->topology_index];
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#if !NO_SYS
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xInsideISR++;
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#endif
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#if XLWIP_CONFIG_INCLUDE_EMACLITE_ON_ZYNQ == 1
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#else
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#ifndef SDT
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XIntc_AckIntr(xtopologyp->intc_baseaddr, 1 << xtopologyp->intc_emac_intr);
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#endif
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#endif
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if (pq_qlength(xemacliteif->send_q) && (XEmacLite_TxBufferAvailable(instance) == TRUE)) {
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struct pbuf *p = pq_dequeue(xemacliteif->send_q);
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_unbuffered_low_level_output(instance, p);
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pbuf_free(p);
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}
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#if !NO_SYS
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xInsideISR--;
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#endif
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}
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/*
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* low_level_input():
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*
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* Should allocate a pbuf and transfer the bytes of the incoming
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* packet from the interface into the pbuf.
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*
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*/
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static struct pbuf *
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low_level_input(struct netif *netif)
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{
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struct xemac_s *xemac = (struct xemac_s *)(netif->state);
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xemacliteif_s *xemacliteif = (xemacliteif_s *)(xemac->state);
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/* see if there is data to process */
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if (pq_qlength(xemacliteif->recv_q) == 0)
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return NULL;
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/* return one packet from receive q */
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return (struct pbuf *)pq_dequeue(xemacliteif->recv_q);
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}
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/*
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* xemacliteif_output():
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*
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* This function is called by the TCP/IP stack when an IP packet
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* should be sent. It calls the function called low_level_output() to
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* do the actual transmission of the packet.
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*
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*/
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err_t
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xemacliteif_output(struct netif *netif, struct pbuf *p,
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const ip_addr_t *ipaddr)
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{
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/* resolve hardware address, then send (or queue) packet */
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return etharp_output(netif, p, ipaddr);
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}
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/*
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* xemacliteif_input():
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*
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* This function should be called when a packet is ready to be read
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* from the interface. It uses the function low_level_input() that
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* should handle the actual reception of bytes from the network
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* interface.
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*
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* Returns the number of packets read (max 1 packet on success,
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* 0 if there are no packets)
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*
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*/
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int
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xemacliteif_input(struct netif *netif)
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{
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struct eth_hdr *ethhdr;
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struct pbuf *p;
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SYS_ARCH_DECL_PROTECT(lev);
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#if !NO_SYS
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while (1)
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#endif
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{
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SYS_ARCH_PROTECT(lev);
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/* move received packet into a new pbuf */
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p = low_level_input(netif);
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SYS_ARCH_UNPROTECT(lev);
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/* no packet could be read, silently ignore this */
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if (p == NULL)
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return 0;
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/* points to packet payload, which starts with an Ethernet header */
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ethhdr = p->payload;
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#if LINK_STATS
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lwip_stats.link.recv++;
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#endif /* LINK_STATS */
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switch (htons(ethhdr->type)) {
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/* IP or ARP packet? */
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case ETHTYPE_IP:
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case ETHTYPE_ARP:
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#if PPPOE_SUPPORT
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/* PPPoE packet? */
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case ETHTYPE_PPPOEDISC:
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case ETHTYPE_PPPOE:
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#endif /* PPPOE_SUPPORT */
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/* full packet send to tcpip_thread to process */
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if (netif->input(p, netif) != ERR_OK) {
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LWIP_DEBUGF(NETIF_DEBUG, ("xlltemacif_input: IP input error\r\n"));
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pbuf_free(p);
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p = NULL;
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}
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break;
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default:
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pbuf_free(p);
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p = NULL;
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break;
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}
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}
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return 1;
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}
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#if !NO_SYS
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static void
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arp_timer(void *arg)
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{
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etharp_tmr();
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sys_timeout(ARP_TMR_INTERVAL, arp_timer, NULL);
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}
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#endif
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static XEmacLite_Config *
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xemaclite_lookup_config(unsigned base)
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{
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XEmacLite_Config *CfgPtr = NULL;
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int i;
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for (i = 0; i < XPAR_XEMACLITE_NUM_INSTANCES; i++)
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if (XEmacLite_ConfigTable[i].BaseAddress == base) {
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CfgPtr = &XEmacLite_ConfigTable[i];
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break;
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}
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return CfgPtr;
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}
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static err_t low_level_init(struct netif *netif)
|
|
{
|
|
struct xemac_s *xemac;
|
|
XEmacLite_Config *config;
|
|
XEmacLite *xemaclitep;
|
|
struct xtopology_t *xtopologyp;
|
|
xemacliteif_s *xemacliteif;
|
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unsigned link_speed = 1000;
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|
|
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xemaclitep = mem_malloc(sizeof *xemaclitep);
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#ifndef XLWIP_CONFIG_INCLUDE_EMACLITE_ON_ZYNQ
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#if XPAR_INTC_0_HAS_FAST == 1
|
|
xemaclitep_fast = xemaclitep;
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|
#endif
|
|
#endif
|
|
if (xemaclitep == NULL) {
|
|
LWIP_DEBUGF(NETIF_DEBUG, ("xemacliteif_init: out of memory\r\n"));
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return ERR_MEM;
|
|
}
|
|
|
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xemac = mem_malloc(sizeof *xemac);
|
|
if (xemac == NULL) {
|
|
LWIP_DEBUGF(NETIF_DEBUG, ("xemacliteif_init: out of memory\r\n"));
|
|
return ERR_MEM;
|
|
}
|
|
|
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xemacliteif = mem_malloc(sizeof *xemacliteif);
|
|
if (xemacliteif == NULL) {
|
|
LWIP_DEBUGF(NETIF_DEBUG, ("xemacliteif_init: out of memory\r\n"));
|
|
return ERR_MEM;
|
|
}
|
|
|
|
/* obtain pointer to topology structure for this emac */
|
|
xemac->topology_index = xtopology_find_index((unsigned)(netif->state));
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xtopologyp = &xtopology[xemac->topology_index];
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|
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/* obtain config of this emaclite */
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config = xemaclite_lookup_config((unsigned)(netif->state));
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|
|
|
/* maximum transfer unit */
|
|
netif->mtu = XEL_MTU_SIZE;
|
|
|
|
/* broadcast capability */
|
|
netif->flags = NETIF_FLAG_BROADCAST | NETIF_FLAG_ETHARP | NETIF_FLAG_LINK_UP;
|
|
|
|
/* initialize the mac */
|
|
#ifndef SDT
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XEmacLite_Initialize(xemaclitep, config->DeviceId);
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|
#else
|
|
XEmacLite_Initialize(xemaclitep, config->BaseAddress);
|
|
#endif
|
|
xemaclitep->NextRxBufferToUse = 0;
|
|
#ifndef SDT
|
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#if XLWIP_CONFIG_INCLUDE_EMACLITE_ON_ZYNQ == 1
|
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XScuGic_RegisterHandler(xtopologyp->scugic_baseaddr,
|
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xtopologyp->intc_emac_intr,
|
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(Xil_ExceptionHandler)XEmacLite_InterruptHandler,
|
|
xemaclitep);
|
|
|
|
XScuGic_SetPriTrigTypeByDistAddr(INTC_DIST_BASE_ADDR,
|
|
xtopologyp->intc_emac_intr,
|
|
EMACLITE_INTR_PRIORITY_SET_IN_GIC,
|
|
TRIG_TYPE_RISING_EDGE_SENSITIVE);
|
|
|
|
XScuGic_EnableIntr(INTC_DIST_BASE_ADDR,
|
|
xtopologyp->intc_emac_intr);
|
|
#else
|
|
#if NO_SYS
|
|
#if XPAR_INTC_0_HAS_FAST == 1
|
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XIntc_RegisterFastHandler(xtopologyp->intc_baseaddr,
|
|
xtopologyp->intc_emac_intr,
|
|
(XFastInterruptHandler)XEmacLite_FastInterruptHandler);
|
|
#else
|
|
XIntc_RegisterHandler(xtopologyp->intc_baseaddr,
|
|
xtopologyp->intc_emac_intr,
|
|
(XInterruptHandler)XEmacLite_InterruptHandler,
|
|
xemaclitep);
|
|
#endif
|
|
#else
|
|
#if XPAR_INTC_0_HAS_FAST == 1
|
|
XIntc_RegisterFastHandler(xtopologyp->intc_baseaddr,
|
|
xtopologyp->intc_emac_intr,
|
|
(XFastInterruptHandler)XEmacLite_FastInterruptHandler);
|
|
|
|
XIntc_EnableIntr(xtopologyp->intc_baseaddr, XIntc_In32(xtopologyp->intc_baseaddr +
|
|
XIN_IER_OFFSET) | (1 << xtopologyp->intc_emac_intr));
|
|
#else
|
|
|
|
XIntc_RegisterHandler(xtopologyp->intc_baseaddr,
|
|
xtopologyp->intc_emac_intr,
|
|
(XInterruptHandler)XEmacLite_InterruptHandler,
|
|
xemaclitep);
|
|
XIntc_EnableIntr(xtopologyp->intc_baseaddr, XIntc_In32(xtopologyp->intc_baseaddr +
|
|
XIN_IER_OFFSET) | (1 << xtopologyp->intc_emac_intr));
|
|
#endif
|
|
#endif
|
|
#endif
|
|
#else
|
|
XSetupInterruptSystem(xemaclitep, &XEmacLite_InterruptHandler,
|
|
config->IntrId,
|
|
config->IntrParent,
|
|
XINTERRUPT_DEFAULT_PRIORITY);
|
|
#endif
|
|
|
|
/* set mac address */
|
|
XEmacLite_SetMacAddress(xemaclitep, (unsigned char*)(netif->hwaddr));
|
|
|
|
/* flush any frames already received */
|
|
XEmacLite_FlushReceive(xemaclitep);
|
|
|
|
/* set Rx, Tx interrupt handlers */
|
|
XEmacLite_SetRecvHandler(xemaclitep, (void *)(xemac), xemacif_recv_handler);
|
|
XEmacLite_SetSendHandler(xemaclitep, (void *)(xemac), xemacif_send_handler);
|
|
|
|
/* enable Rx, Tx interrupts */
|
|
XEmacLite_EnableInterrupts(xemaclitep);
|
|
|
|
#if !NO_SYS
|
|
sys_sem_new(&xemac->sem_rx_data_available, 0);
|
|
#endif
|
|
|
|
/* replace the state in netif (currently the base address of emaclite)
|
|
* with the xemacliteif instance pointer.
|
|
* this contains a pointer to the config table entry
|
|
*/
|
|
xemac->type = xemac_type_xps_emaclite;
|
|
xemac->state = (void *)xemacliteif;
|
|
netif->state = (void *)xemac;
|
|
|
|
xemacliteif->instance = xemaclitep;
|
|
xemacliteif->recv_q = pq_create_queue();
|
|
if (!xemacliteif->recv_q)
|
|
return ERR_MEM;
|
|
|
|
xemacliteif->send_q = pq_create_queue();
|
|
if (!xemacliteif->send_q)
|
|
return ERR_MEM;
|
|
|
|
/* Initialize PHY */
|
|
|
|
|
|
/* set PHY <--> MAC data clock */
|
|
#ifdef CONFIG_LINKSPEED_AUTODETECT
|
|
link_speed = get_IEEE_phy_speed_emaclite(xemaclitep);
|
|
xil_printf("auto-negotiated link speed: %d\r\n", link_speed);
|
|
#elif defined(CONFIG_LINKSPEED1000)
|
|
xil_printf("Link speed of 1000 Mbps not possible\r\n");
|
|
#elif defined(CONFIG_LINKSPEED100)
|
|
link_speed = 100;
|
|
configure_IEEE_phy_speed_emaclite(xemaclitep, link_speed);
|
|
xil_printf("link speed: %d\r\n", link_speed);
|
|
#elif defined(CONFIG_LINKSPEED10)
|
|
link_speed = 10;
|
|
configure_IEEE_phy_speed_emaclite(xemaclitep, link_speed);
|
|
xil_printf("link speed: %d\r\n", link_speed);
|
|
#endif
|
|
|
|
return ERR_OK;
|
|
}
|
|
|
|
|
|
static int detect_phy_emaclite(XEmacLite *xemaclitep)
|
|
{
|
|
u16 phy_reg;
|
|
u32 phy_addr;
|
|
|
|
for (phy_addr = 31; phy_addr > 0; phy_addr--) {
|
|
XEmacLite_PhyRead(xemaclitep, phy_addr, PHY_DETECT_REG, &phy_reg);
|
|
|
|
if ((phy_reg != 0xFFFF) &&
|
|
((phy_reg & PHY_DETECT_MASK) == PHY_DETECT_MASK)) {
|
|
/* Found a valid PHY address */
|
|
LWIP_DEBUGF(NETIF_DEBUG, ("XEMacLite detect_phy: PHY detected at address %d.\r\n", phy_addr));
|
|
LWIP_DEBUGF(NETIF_DEBUG, ("XEMacLite detect_phy: PHY detected.\r\n"));
|
|
return phy_addr;
|
|
}
|
|
}
|
|
|
|
LWIP_DEBUGF(NETIF_DEBUG, ("XEMacLite detect_phy: No PHY detected. Assuming a PHY at address 0\r\n"));
|
|
|
|
/* default to zero */
|
|
return 0;
|
|
}
|
|
|
|
unsigned get_IEEE_phy_speed_emaclite(XEmacLite *xemaclitep)
|
|
{
|
|
u16 control;
|
|
u16 status;
|
|
u16 partner_capabilities;
|
|
u16 partner_capabilities_1000;
|
|
u16 phylinkspeed;
|
|
u32 phy_addr = detect_phy_emaclite(xemaclitep);
|
|
|
|
/* Don't advertise PHY speed of 1000 Mbps */
|
|
XEmacLite_PhyWrite(xemaclitep, phy_addr,
|
|
IEEE_1000_ADVERTISE_REG_OFFSET,
|
|
0);
|
|
/* Advertise PHY speed of 100 and 10 Mbps */
|
|
XEmacLite_PhyWrite(xemaclitep, phy_addr,
|
|
IEEE_AUTONEGO_ADVERTISE_REG,
|
|
ADVERTISE_100_AND_10);
|
|
|
|
XEmacLite_PhyRead(xemaclitep, phy_addr,
|
|
IEEE_CONTROL_REG_OFFSET,
|
|
&control);
|
|
control |= (IEEE_CTRL_AUTONEGOTIATE_ENABLE |
|
|
IEEE_STAT_AUTONEGOTIATE_RESTART);
|
|
|
|
XEmacLite_PhyWrite(xemaclitep, phy_addr,
|
|
IEEE_CONTROL_REG_OFFSET,
|
|
control);
|
|
|
|
/* Read PHY control and status registers is successful. */
|
|
XEmacLite_PhyRead(xemaclitep, phy_addr,
|
|
IEEE_CONTROL_REG_OFFSET,
|
|
&control);
|
|
XEmacLite_PhyRead(xemaclitep, phy_addr,
|
|
IEEE_STATUS_REG_OFFSET,
|
|
&status);
|
|
|
|
if ((control & IEEE_CTRL_AUTONEGOTIATE_ENABLE) &&
|
|
(status & IEEE_STAT_AUTONEGOTIATE_CAPABLE)) {
|
|
|
|
while ( !(status & IEEE_STAT_AUTONEGOTIATE_COMPLETE) ) {
|
|
XEmacLite_PhyRead(xemaclitep, phy_addr,
|
|
IEEE_STATUS_REG_OFFSET,
|
|
&status);
|
|
}
|
|
|
|
XEmacLite_PhyRead(xemaclitep, phy_addr,
|
|
IEEE_PARTNER_ABILITIES_1_REG_OFFSET,
|
|
&partner_capabilities);
|
|
|
|
if (status & IEEE_STAT_1GBPS_EXTENSIONS) {
|
|
XEmacLite_PhyRead(xemaclitep, phy_addr,
|
|
IEEE_PARTNER_ABILITIES_3_REG_OFFSET,
|
|
&partner_capabilities_1000);
|
|
if (partner_capabilities_1000 & IEEE_AN3_ABILITY_MASK_1GBPS) return 1000;
|
|
}
|
|
|
|
if (partner_capabilities & IEEE_AN1_ABILITY_MASK_100MBPS) return 100;
|
|
if (partner_capabilities & IEEE_AN1_ABILITY_MASK_10MBPS) return 10;
|
|
|
|
xil_printf("%s: unknown PHY link speed, setting TEMAC speed to be 10 Mbps\r\n",
|
|
__FUNCTION__);
|
|
return 10;
|
|
|
|
|
|
} else {
|
|
|
|
/* Update TEMAC speed accordingly */
|
|
if (status & IEEE_STAT_1GBPS_EXTENSIONS) {
|
|
|
|
/* Get commanded link speed */
|
|
phylinkspeed = control & IEEE_CTRL_1GBPS_LINKSPEED_MASK;
|
|
|
|
switch (phylinkspeed) {
|
|
case (IEEE_CTRL_LINKSPEED_1000M):
|
|
return 1000;
|
|
case (IEEE_CTRL_LINKSPEED_100M):
|
|
return 100;
|
|
case (IEEE_CTRL_LINKSPEED_10M):
|
|
return 10;
|
|
default:
|
|
xil_printf("%s: unknown PHY link speed (%d), setting TEMAC speed to be 10 Mbps\r\n",
|
|
__FUNCTION__, phylinkspeed);
|
|
return 10;
|
|
}
|
|
|
|
} else {
|
|
|
|
return (control & IEEE_CTRL_LINKSPEED_MASK) ? 100 : 10;
|
|
|
|
}
|
|
|
|
}
|
|
}
|
|
|
|
unsigned configure_IEEE_phy_speed_emaclite(XEmacLite *xemaclitep, unsigned speed)
|
|
{
|
|
u16 control;
|
|
u32 phy_addr = detect_phy_emaclite(xemaclitep);
|
|
|
|
XEmacLite_PhyRead(xemaclitep, phy_addr,
|
|
IEEE_CONTROL_REG_OFFSET,
|
|
&control);
|
|
control &= ~IEEE_CTRL_LINKSPEED_100M;
|
|
control &= ~IEEE_CTRL_LINKSPEED_10M;
|
|
if (speed == 100) {
|
|
control |= IEEE_CTRL_LINKSPEED_100M;
|
|
/* Don't advertise PHY speed of 1000 Mbps */
|
|
XEmacLite_PhyWrite(xemaclitep, phy_addr,
|
|
IEEE_1000_ADVERTISE_REG_OFFSET,
|
|
0);
|
|
/* Don't advertise PHY speed of 10 Mbps */
|
|
XEmacLite_PhyWrite(xemaclitep, phy_addr,
|
|
IEEE_AUTONEGO_ADVERTISE_REG,
|
|
ADVERTISE_100);
|
|
|
|
}
|
|
else if (speed == 10) {
|
|
control |= IEEE_CTRL_LINKSPEED_10M;
|
|
/* Don't advertise PHY speed of 1000 Mbps */
|
|
XEmacLite_PhyWrite(xemaclitep, phy_addr,
|
|
IEEE_1000_ADVERTISE_REG_OFFSET,
|
|
0);
|
|
/* Don't advertise PHY speed of 100 Mbps */
|
|
XEmacLite_PhyWrite(xemaclitep, phy_addr,
|
|
IEEE_AUTONEGO_ADVERTISE_REG,
|
|
ADVERTISE_10);
|
|
}
|
|
|
|
XEmacLite_PhyWrite(xemaclitep, phy_addr,
|
|
IEEE_CONTROL_REG_OFFSET,
|
|
control | IEEE_CTRL_RESET_MASK);
|
|
{
|
|
volatile int wait;
|
|
for (wait=0; wait < 100000; wait++);
|
|
for (wait=0; wait < 100000; wait++);
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
/*
|
|
* xemacliteif_init():
|
|
*
|
|
* Should be called at the beginning of the program to set up the
|
|
* network interface. It calls the function low_level_init() to do the
|
|
* actual setup of the hardware.
|
|
*
|
|
*/
|
|
|
|
err_t
|
|
xemacliteif_init(struct netif *netif)
|
|
{
|
|
#if LWIP_SNMP
|
|
/* ifType ethernetCsmacd(6) @see RFC1213 */
|
|
netif->link_type = 6;
|
|
/* your link speed here */
|
|
netif->link_speed = ;
|
|
netif->ts = 0;
|
|
netif->ifinoctets = 0;
|
|
netif->ifinucastpkts = 0;
|
|
netif->ifinnucastpkts = 0;
|
|
netif->ifindiscards = 0;
|
|
netif->ifoutoctets = 0;
|
|
netif->ifoutucastpkts = 0;
|
|
netif->ifoutnucastpkts = 0;
|
|
netif->ifoutdiscards = 0;
|
|
#endif
|
|
|
|
netif->name[0] = IFNAME0;
|
|
netif->name[1] = IFNAME1;
|
|
netif->output = xemacliteif_output;
|
|
netif->linkoutput = low_level_output;
|
|
|
|
low_level_init(netif);
|
|
|
|
#if !NO_SYS
|
|
sys_timeout(ARP_TMR_INTERVAL, arp_timer, NULL);
|
|
#endif
|
|
|
|
return ERR_OK;
|
|
}
|
|
|
|
#ifndef XLWIP_CONFIG_INCLUDE_EMACLITE_ON_ZYNQ
|
|
#if XPAR_INTC_0_HAS_FAST == 1
|
|
/****************** Fast Interrupt Handler **********************************/
|
|
|
|
void XEmacLite_FastInterruptHandler (void)
|
|
{
|
|
XEmacLite_InterruptHandler((void *)xemaclitep_fast);
|
|
}
|
|
#endif
|
|
#endif
|