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authorLada Trimasova <Lada.Trimasova@synopsys.com>2016-03-03 17:07:46 +0300
committerDavid S. Miller <davem@davemloft.net>2016-03-03 17:20:08 -0500
commitb54b8c2d6e3cd1db17405a402ba42da5a9c8bf1d (patch)
treec86b9a80d933da5798d6d0fc5262baa4f4fafcd5 /drivers/net/ethernet/ezchip/nps_enet.c
parent274ba628a32ee15bb8e08b8a9240c354066ed24a (diff)
net: ezchip: adapt driver to little endian architecture
Since ezchip network driver is written with big endian EZChip platform it is necessary to add support for little endian architecture. The first issue is that the order of the bits in a bit field is implementation specific. So all the bit fields are removed. Named constants are used to access necessary fields. And the second one is that network byte order is big endian. For example, data on ethernet is transmitted with most-significant octet (byte) first. So in case of little endian architecture it is important to swap data byte order when we read it from register. In case of unaligned access we can use "get_unaligned_be32" and in other case we can use function "ioread32_rep" which reads all data from register and works either with little endian or big endian architecture. And then when we are going to write data to register we need to restore byte order using the function "put_unaligned_be32" in case of unaligned access and in other case "iowrite32_rep". The last little fix is a space between type and pointer to observe coding style. Signed-off-by: Lada Trimasova <ltrimas@synopsys.com> Cc: Alexey Brodkin <abrodkin@synopsys.com> Cc: Noam Camus <noamc@ezchip.com> Cc: Tal Zilcer <talz@ezchip.com> Cc: Arnd Bergmann <arnd@arndb.de> Acked-by: Arnd Bergmann <arnd@arndb.de> Signed-off-by: David S. Miller <davem@davemloft.net>
Diffstat (limited to 'drivers/net/ethernet/ezchip/nps_enet.c')
-rw-r--r--drivers/net/ethernet/ezchip/nps_enet.c222
1 files changed, 119 insertions, 103 deletions
diff --git a/drivers/net/ethernet/ezchip/nps_enet.c b/drivers/net/ethernet/ezchip/nps_enet.c
index b1026689b78f..1f23845a0694 100644
--- a/drivers/net/ethernet/ezchip/nps_enet.c
+++ b/drivers/net/ethernet/ezchip/nps_enet.c
@@ -43,20 +43,21 @@ static void nps_enet_read_rx_fifo(struct net_device *ndev,
bool dst_is_aligned = IS_ALIGNED((unsigned long)dst, sizeof(u32));
/* In case dst is not aligned we need an intermediate buffer */
- if (dst_is_aligned)
- for (i = 0; i < len; i++, reg++)
- *reg = nps_enet_reg_get(priv, NPS_ENET_REG_RX_BUF);
+ if (dst_is_aligned) {
+ ioread32_rep(priv->regs_base + NPS_ENET_REG_RX_BUF, reg, len);
+ reg += len;
+ }
else { /* !dst_is_aligned */
for (i = 0; i < len; i++, reg++) {
u32 buf = nps_enet_reg_get(priv, NPS_ENET_REG_RX_BUF);
- put_unaligned(buf, reg);
+ put_unaligned_be32(buf, reg);
}
}
-
/* copy last bytes (if any) */
if (last) {
- u32 buf = nps_enet_reg_get(priv, NPS_ENET_REG_RX_BUF);
- memcpy((u8*)reg, &buf, last);
+ u32 buf;
+ ioread32_rep(priv->regs_base + NPS_ENET_REG_RX_BUF, &buf, 1);
+ memcpy((u8 *)reg, &buf, last);
}
}
@@ -66,26 +67,28 @@ static u32 nps_enet_rx_handler(struct net_device *ndev)
u32 work_done = 0;
struct nps_enet_priv *priv = netdev_priv(ndev);
struct sk_buff *skb;
- struct nps_enet_rx_ctl rx_ctrl;
+ u32 rx_ctrl_value = nps_enet_reg_get(priv, NPS_ENET_REG_RX_CTL);
+ u32 rx_ctrl_cr = (rx_ctrl_value & RX_CTL_CR_MASK) >> RX_CTL_CR_SHIFT;
+ u32 rx_ctrl_er = (rx_ctrl_value & RX_CTL_ER_MASK) >> RX_CTL_ER_SHIFT;
+ u32 rx_ctrl_crc = (rx_ctrl_value & RX_CTL_CRC_MASK) >> RX_CTL_CRC_SHIFT;
- rx_ctrl.value = nps_enet_reg_get(priv, NPS_ENET_REG_RX_CTL);
- frame_len = rx_ctrl.nr;
+ frame_len = (rx_ctrl_value & RX_CTL_NR_MASK) >> RX_CTL_NR_SHIFT;
/* Check if we got RX */
- if (!rx_ctrl.cr)
+ if (!rx_ctrl_cr)
return work_done;
/* If we got here there is a work for us */
work_done++;
/* Check Rx error */
- if (rx_ctrl.er) {
+ if (rx_ctrl_er) {
ndev->stats.rx_errors++;
err = 1;
}
/* Check Rx CRC error */
- if (rx_ctrl.crc) {
+ if (rx_ctrl_crc) {
ndev->stats.rx_crc_errors++;
ndev->stats.rx_dropped++;
err = 1;
@@ -136,23 +139,24 @@ rx_irq_frame_done:
static void nps_enet_tx_handler(struct net_device *ndev)
{
struct nps_enet_priv *priv = netdev_priv(ndev);
- struct nps_enet_tx_ctl tx_ctrl;
-
- tx_ctrl.value = nps_enet_reg_get(priv, NPS_ENET_REG_TX_CTL);
+ u32 tx_ctrl_value = nps_enet_reg_get(priv, NPS_ENET_REG_TX_CTL);
+ u32 tx_ctrl_ct = (tx_ctrl_value & TX_CTL_CT_MASK) >> TX_CTL_CT_SHIFT;
+ u32 tx_ctrl_et = (tx_ctrl_value & TX_CTL_ET_MASK) >> TX_CTL_ET_SHIFT;
+ u32 tx_ctrl_nt = (tx_ctrl_value & TX_CTL_NT_MASK) >> TX_CTL_NT_SHIFT;
/* Check if we got TX */
- if (!priv->tx_packet_sent || tx_ctrl.ct)
+ if (!priv->tx_packet_sent || tx_ctrl_ct)
return;
/* Ack Tx ctrl register */
nps_enet_reg_set(priv, NPS_ENET_REG_TX_CTL, 0);
/* Check Tx transmit error */
- if (unlikely(tx_ctrl.et)) {
+ if (unlikely(tx_ctrl_et)) {
ndev->stats.tx_errors++;
} else {
ndev->stats.tx_packets++;
- ndev->stats.tx_bytes += tx_ctrl.nt;
+ ndev->stats.tx_bytes += tx_ctrl_nt;
}
dev_kfree_skb(priv->tx_skb);
@@ -178,13 +182,16 @@ static int nps_enet_poll(struct napi_struct *napi, int budget)
nps_enet_tx_handler(ndev);
work_done = nps_enet_rx_handler(ndev);
if (work_done < budget) {
- struct nps_enet_buf_int_enable buf_int_enable;
+ u32 buf_int_enable_value = 0;
napi_complete(napi);
- buf_int_enable.rx_rdy = NPS_ENET_ENABLE;
- buf_int_enable.tx_done = NPS_ENET_ENABLE;
+
+ /* set tx_done and rx_rdy bits */
+ buf_int_enable_value |= NPS_ENET_ENABLE << RX_RDY_SHIFT;
+ buf_int_enable_value |= NPS_ENET_ENABLE << TX_DONE_SHIFT;
+
nps_enet_reg_set(priv, NPS_ENET_REG_BUF_INT_ENABLE,
- buf_int_enable.value);
+ buf_int_enable_value);
}
return work_done;
@@ -205,13 +212,12 @@ static irqreturn_t nps_enet_irq_handler(s32 irq, void *dev_instance)
{
struct net_device *ndev = dev_instance;
struct nps_enet_priv *priv = netdev_priv(ndev);
- struct nps_enet_rx_ctl rx_ctrl;
- struct nps_enet_tx_ctl tx_ctrl;
-
- rx_ctrl.value = nps_enet_reg_get(priv, NPS_ENET_REG_RX_CTL);
- tx_ctrl.value = nps_enet_reg_get(priv, NPS_ENET_REG_TX_CTL);
+ u32 rx_ctrl_value = nps_enet_reg_get(priv, NPS_ENET_REG_RX_CTL);
+ u32 tx_ctrl_value = nps_enet_reg_get(priv, NPS_ENET_REG_TX_CTL);
+ u32 tx_ctrl_ct = (tx_ctrl_value & TX_CTL_CT_MASK) >> TX_CTL_CT_SHIFT;
+ u32 rx_ctrl_cr = (rx_ctrl_value & RX_CTL_CR_MASK) >> RX_CTL_CR_SHIFT;
- if ((!tx_ctrl.ct && priv->tx_packet_sent) || rx_ctrl.cr)
+ if ((!tx_ctrl_ct && priv->tx_packet_sent) || rx_ctrl_cr)
if (likely(napi_schedule_prep(&priv->napi))) {
nps_enet_reg_set(priv, NPS_ENET_REG_BUF_INT_ENABLE, 0);
__napi_schedule(&priv->napi);
@@ -223,22 +229,24 @@ static irqreturn_t nps_enet_irq_handler(s32 irq, void *dev_instance)
static void nps_enet_set_hw_mac_address(struct net_device *ndev)
{
struct nps_enet_priv *priv = netdev_priv(ndev);
- struct nps_enet_ge_mac_cfg_1 ge_mac_cfg_1;
- struct nps_enet_ge_mac_cfg_2 *ge_mac_cfg_2 = &priv->ge_mac_cfg_2;
+ u32 ge_mac_cfg_1_value = 0;
+ u32 *ge_mac_cfg_2_value = &priv->ge_mac_cfg_2_value;
/* set MAC address in HW */
- ge_mac_cfg_1.octet_0 = ndev->dev_addr[0];
- ge_mac_cfg_1.octet_1 = ndev->dev_addr[1];
- ge_mac_cfg_1.octet_2 = ndev->dev_addr[2];
- ge_mac_cfg_1.octet_3 = ndev->dev_addr[3];
- ge_mac_cfg_2->octet_4 = ndev->dev_addr[4];
- ge_mac_cfg_2->octet_5 = ndev->dev_addr[5];
+ ge_mac_cfg_1_value |= ndev->dev_addr[0] << CFG_1_OCTET_0_SHIFT;
+ ge_mac_cfg_1_value |= ndev->dev_addr[1] << CFG_1_OCTET_1_SHIFT;
+ ge_mac_cfg_1_value |= ndev->dev_addr[2] << CFG_1_OCTET_2_SHIFT;
+ ge_mac_cfg_1_value |= ndev->dev_addr[3] << CFG_1_OCTET_3_SHIFT;
+ *ge_mac_cfg_2_value = (*ge_mac_cfg_2_value & ~CFG_2_OCTET_4_MASK)
+ | ndev->dev_addr[4] << CFG_2_OCTET_4_SHIFT;
+ *ge_mac_cfg_2_value = (*ge_mac_cfg_2_value & ~CFG_2_OCTET_5_MASK)
+ | ndev->dev_addr[5] << CFG_2_OCTET_5_SHIFT;
nps_enet_reg_set(priv, NPS_ENET_REG_GE_MAC_CFG_1,
- ge_mac_cfg_1.value);
+ ge_mac_cfg_1_value);
nps_enet_reg_set(priv, NPS_ENET_REG_GE_MAC_CFG_2,
- ge_mac_cfg_2->value);
+ *ge_mac_cfg_2_value);
}
/**
@@ -254,93 +262,97 @@ static void nps_enet_set_hw_mac_address(struct net_device *ndev)
static void nps_enet_hw_reset(struct net_device *ndev)
{
struct nps_enet_priv *priv = netdev_priv(ndev);
- struct nps_enet_ge_rst ge_rst;
- struct nps_enet_phase_fifo_ctl phase_fifo_ctl;
+ u32 ge_rst_value = 0, phase_fifo_ctl_value = 0;
- ge_rst.value = 0;
- phase_fifo_ctl.value = 0;
/* Pcs reset sequence*/
- ge_rst.gmac_0 = NPS_ENET_ENABLE;
- nps_enet_reg_set(priv, NPS_ENET_REG_GE_RST, ge_rst.value);
+ ge_rst_value |= NPS_ENET_ENABLE << RST_GMAC_0_SHIFT;
+ nps_enet_reg_set(priv, NPS_ENET_REG_GE_RST, ge_rst_value);
usleep_range(10, 20);
- ge_rst.value = 0;
- nps_enet_reg_set(priv, NPS_ENET_REG_GE_RST, ge_rst.value);
+ nps_enet_reg_set(priv, NPS_ENET_REG_GE_RST, ge_rst_value);
/* Tx fifo reset sequence */
- phase_fifo_ctl.rst = NPS_ENET_ENABLE;
- phase_fifo_ctl.init = NPS_ENET_ENABLE;
+ phase_fifo_ctl_value |= NPS_ENET_ENABLE << PHASE_FIFO_CTL_RST_SHIFT;
+ phase_fifo_ctl_value |= NPS_ENET_ENABLE << PHASE_FIFO_CTL_INIT_SHIFT;
nps_enet_reg_set(priv, NPS_ENET_REG_PHASE_FIFO_CTL,
- phase_fifo_ctl.value);
+ phase_fifo_ctl_value);
usleep_range(10, 20);
- phase_fifo_ctl.value = 0;
+ phase_fifo_ctl_value = 0;
nps_enet_reg_set(priv, NPS_ENET_REG_PHASE_FIFO_CTL,
- phase_fifo_ctl.value);
+ phase_fifo_ctl_value);
}
static void nps_enet_hw_enable_control(struct net_device *ndev)
{
struct nps_enet_priv *priv = netdev_priv(ndev);
- struct nps_enet_ge_mac_cfg_0 ge_mac_cfg_0;
- struct nps_enet_buf_int_enable buf_int_enable;
- struct nps_enet_ge_mac_cfg_2 *ge_mac_cfg_2 = &priv->ge_mac_cfg_2;
- struct nps_enet_ge_mac_cfg_3 *ge_mac_cfg_3 = &priv->ge_mac_cfg_3;
+ u32 ge_mac_cfg_0_value = 0, buf_int_enable_value = 0;
+ u32 *ge_mac_cfg_2_value = &priv->ge_mac_cfg_2_value;
+ u32 *ge_mac_cfg_3_value = &priv->ge_mac_cfg_3_value;
s32 max_frame_length;
- ge_mac_cfg_0.value = 0;
- buf_int_enable.value = 0;
/* Enable Rx and Tx statistics */
- ge_mac_cfg_2->stat_en = NPS_ENET_GE_MAC_CFG_2_STAT_EN;
+ *ge_mac_cfg_2_value = (*ge_mac_cfg_2_value & ~CFG_2_STAT_EN_MASK)
+ | NPS_ENET_GE_MAC_CFG_2_STAT_EN << CFG_2_STAT_EN_SHIFT;
/* Discard packets with different MAC address */
- ge_mac_cfg_2->disc_da = NPS_ENET_ENABLE;
+ *ge_mac_cfg_2_value = (*ge_mac_cfg_2_value & ~CFG_2_DISK_DA_MASK)
+ | NPS_ENET_ENABLE << CFG_2_DISK_DA_SHIFT;
/* Discard multicast packets */
- ge_mac_cfg_2->disc_mc = NPS_ENET_ENABLE;
+ *ge_mac_cfg_2_value = (*ge_mac_cfg_2_value & ~CFG_2_DISK_MC_MASK)
+ | NPS_ENET_ENABLE << CFG_2_DISK_MC_SHIFT;
nps_enet_reg_set(priv, NPS_ENET_REG_GE_MAC_CFG_2,
- ge_mac_cfg_2->value);
+ *ge_mac_cfg_2_value);
/* Discard Packets bigger than max frame length */
max_frame_length = ETH_HLEN + ndev->mtu + ETH_FCS_LEN;
- if (max_frame_length <= NPS_ENET_MAX_FRAME_LENGTH)
- ge_mac_cfg_3->max_len = max_frame_length;
+ if (max_frame_length <= NPS_ENET_MAX_FRAME_LENGTH) {
+ *ge_mac_cfg_3_value =
+ (*ge_mac_cfg_3_value & ~CFG_3_MAX_LEN_MASK)
+ | max_frame_length << CFG_3_MAX_LEN_SHIFT;
+ }
/* Enable interrupts */
- buf_int_enable.rx_rdy = NPS_ENET_ENABLE;
- buf_int_enable.tx_done = NPS_ENET_ENABLE;
+ buf_int_enable_value |= NPS_ENET_ENABLE << RX_RDY_SHIFT;
+ buf_int_enable_value |= NPS_ENET_ENABLE << TX_DONE_SHIFT;
nps_enet_reg_set(priv, NPS_ENET_REG_BUF_INT_ENABLE,
- buf_int_enable.value);
+ buf_int_enable_value);
/* Write device MAC address to HW */
nps_enet_set_hw_mac_address(ndev);
/* Rx and Tx HW features */
- ge_mac_cfg_0.tx_pad_en = NPS_ENET_ENABLE;
- ge_mac_cfg_0.tx_crc_en = NPS_ENET_ENABLE;
- ge_mac_cfg_0.rx_crc_strip = NPS_ENET_ENABLE;
+ ge_mac_cfg_0_value |= NPS_ENET_ENABLE << CFG_0_TX_PAD_EN_SHIFT;
+ ge_mac_cfg_0_value |= NPS_ENET_ENABLE << CFG_0_TX_CRC_EN_SHIFT;
+ ge_mac_cfg_0_value |= NPS_ENET_ENABLE << CFG_0_RX_CRC_STRIP_SHIFT;
/* IFG configuration */
- ge_mac_cfg_0.rx_ifg = NPS_ENET_GE_MAC_CFG_0_RX_IFG;
- ge_mac_cfg_0.tx_ifg = NPS_ENET_GE_MAC_CFG_0_TX_IFG;
+ ge_mac_cfg_0_value |=
+ NPS_ENET_GE_MAC_CFG_0_RX_IFG << CFG_0_RX_IFG_SHIFT;
+ ge_mac_cfg_0_value |=
+ NPS_ENET_GE_MAC_CFG_0_TX_IFG << CFG_0_TX_IFG_SHIFT;
/* preamble configuration */
- ge_mac_cfg_0.rx_pr_check_en = NPS_ENET_ENABLE;
- ge_mac_cfg_0.tx_pr_len = NPS_ENET_GE_MAC_CFG_0_TX_PR_LEN;
+ ge_mac_cfg_0_value |= NPS_ENET_ENABLE << CFG_0_RX_PR_CHECK_EN_SHIFT;
+ ge_mac_cfg_0_value |=
+ NPS_ENET_GE_MAC_CFG_0_TX_PR_LEN << CFG_0_TX_PR_LEN_SHIFT;
/* enable flow control frames */
- ge_mac_cfg_0.tx_fc_en = NPS_ENET_ENABLE;
- ge_mac_cfg_0.rx_fc_en = NPS_ENET_ENABLE;
- ge_mac_cfg_0.tx_fc_retr = NPS_ENET_GE_MAC_CFG_0_TX_FC_RETR;
- ge_mac_cfg_3->cf_drop = NPS_ENET_ENABLE;
+ ge_mac_cfg_0_value |= NPS_ENET_ENABLE << CFG_0_TX_FC_EN_SHIFT;
+ ge_mac_cfg_0_value |= NPS_ENET_ENABLE << CFG_0_RX_FC_EN_SHIFT;
+ ge_mac_cfg_0_value |=
+ NPS_ENET_GE_MAC_CFG_0_TX_FC_RETR << CFG_0_TX_FC_RETR_SHIFT;
+ *ge_mac_cfg_3_value = (*ge_mac_cfg_3_value & ~CFG_3_CF_DROP_MASK)
+ | NPS_ENET_ENABLE << CFG_3_CF_DROP_SHIFT;
/* Enable Rx and Tx */
- ge_mac_cfg_0.rx_en = NPS_ENET_ENABLE;
- ge_mac_cfg_0.tx_en = NPS_ENET_ENABLE;
+ ge_mac_cfg_0_value |= NPS_ENET_ENABLE << CFG_0_RX_EN_SHIFT;
+ ge_mac_cfg_0_value |= NPS_ENET_ENABLE << CFG_0_TX_EN_SHIFT;
nps_enet_reg_set(priv, NPS_ENET_REG_GE_MAC_CFG_3,
- ge_mac_cfg_3->value);
+ *ge_mac_cfg_3_value);
nps_enet_reg_set(priv, NPS_ENET_REG_GE_MAC_CFG_0,
- ge_mac_cfg_0.value);
+ ge_mac_cfg_0_value);
}
static void nps_enet_hw_disable_control(struct net_device *ndev)
@@ -358,31 +370,28 @@ static void nps_enet_send_frame(struct net_device *ndev,
struct sk_buff *skb)
{
struct nps_enet_priv *priv = netdev_priv(ndev);
- struct nps_enet_tx_ctl tx_ctrl;
+ u32 tx_ctrl_value = 0;
short length = skb->len;
u32 i, len = DIV_ROUND_UP(length, sizeof(u32));
u32 *src = (void *)skb->data;
bool src_is_aligned = IS_ALIGNED((unsigned long)src, sizeof(u32));
- tx_ctrl.value = 0;
/* In case src is not aligned we need an intermediate buffer */
if (src_is_aligned)
- for (i = 0; i < len; i++, src++)
- nps_enet_reg_set(priv, NPS_ENET_REG_TX_BUF, *src);
+ iowrite32_rep(priv->regs_base + NPS_ENET_REG_TX_BUF, src, len);
else /* !src_is_aligned */
for (i = 0; i < len; i++, src++)
nps_enet_reg_set(priv, NPS_ENET_REG_TX_BUF,
- get_unaligned(src));
+ get_unaligned_be32(src));
/* Write the length of the Frame */
- tx_ctrl.nt = length;
+ tx_ctrl_value |= length << TX_CTL_NT_SHIFT;
/* Indicate SW is done */
priv->tx_packet_sent = true;
- tx_ctrl.ct = NPS_ENET_ENABLE;
-
+ tx_ctrl_value |= NPS_ENET_ENABLE << TX_CTL_CT_SHIFT;
/* Send Frame */
- nps_enet_reg_set(priv, NPS_ENET_REG_TX_CTL, tx_ctrl.value);
+ nps_enet_reg_set(priv, NPS_ENET_REG_TX_CTL, tx_ctrl_value);
}
/**
@@ -422,19 +431,23 @@ static s32 nps_enet_set_mac_address(struct net_device *ndev, void *p)
static void nps_enet_set_rx_mode(struct net_device *ndev)
{
struct nps_enet_priv *priv = netdev_priv(ndev);
- struct nps_enet_ge_mac_cfg_2 ge_mac_cfg_2;
-
- ge_mac_cfg_2.value = priv->ge_mac_cfg_2.value;
+ u32 ge_mac_cfg_2_value = priv->ge_mac_cfg_2_value;
if (ndev->flags & IFF_PROMISC) {
- ge_mac_cfg_2.disc_da = NPS_ENET_DISABLE;
- ge_mac_cfg_2.disc_mc = NPS_ENET_DISABLE;
+ ge_mac_cfg_2_value = (ge_mac_cfg_2_value & ~CFG_2_DISK_DA_MASK)
+ | NPS_ENET_DISABLE << CFG_2_DISK_DA_SHIFT;
+ ge_mac_cfg_2_value = (ge_mac_cfg_2_value & ~CFG_2_DISK_MC_MASK)
+ | NPS_ENET_DISABLE << CFG_2_DISK_MC_SHIFT;
+
} else {
- ge_mac_cfg_2.disc_da = NPS_ENET_ENABLE;
- ge_mac_cfg_2.disc_mc = NPS_ENET_ENABLE;
+ ge_mac_cfg_2_value = (ge_mac_cfg_2_value & ~CFG_2_DISK_DA_MASK)
+ | NPS_ENET_ENABLE << CFG_2_DISK_DA_SHIFT;
+ ge_mac_cfg_2_value = (ge_mac_cfg_2_value & ~CFG_2_DISK_MC_MASK)
+ | NPS_ENET_ENABLE << CFG_2_DISK_MC_SHIFT;
+
}
- nps_enet_reg_set(priv, NPS_ENET_REG_GE_MAC_CFG_2, ge_mac_cfg_2.value);
+ nps_enet_reg_set(priv, NPS_ENET_REG_GE_MAC_CFG_2, ge_mac_cfg_2_value);
}
/**
@@ -453,12 +466,15 @@ static s32 nps_enet_open(struct net_device *ndev)
/* Reset private variables */
priv->tx_packet_sent = false;
- priv->ge_mac_cfg_2.value = 0;
- priv->ge_mac_cfg_3.value = 0;
+ priv->ge_mac_cfg_2_value = 0;
+ priv->ge_mac_cfg_3_value = 0;
/* ge_mac_cfg_3 default values */
- priv->ge_mac_cfg_3.rx_ifg_th = NPS_ENET_GE_MAC_CFG_3_RX_IFG_TH;
- priv->ge_mac_cfg_3.max_len = NPS_ENET_GE_MAC_CFG_3_MAX_LEN;
+ priv->ge_mac_cfg_3_value |=
+ NPS_ENET_GE_MAC_CFG_3_RX_IFG_TH << CFG_3_RX_IFG_TH_SHIFT;
+
+ priv->ge_mac_cfg_3_value |=
+ NPS_ENET_GE_MAC_CFG_3_MAX_LEN << CFG_3_MAX_LEN_SHIFT;
/* Disable HW device */
nps_enet_hw_disable_control(ndev);