提交 a61bfa65 编写于 作者: D David S. Miller

Merge branch 'xgene-next'

Keyur Chudgar says:

====================
drivers: net: xgene: Add second SGMII based 1G interface

This patch adds support for second SGMII based 1G interface.
====================
Signed-off-by: NKeyur Chudgar <kchudgar@apm.com>
Signed-off-by: NIyappan Subramanian <isubramanian@apm.com>
Signed-off-by: NDavid S. Miller <davem@davemloft.net>
......@@ -15,6 +15,7 @@ Required properties for all the ethernet interfaces:
- "ring_csr": Descriptor ring control and status register address space
- "ring_cmd": Descriptor ring command register address space
- interrupts: Ethernet main interrupt
- port-id: Port number (0 or 1)
- clocks: Reference to the clock entry.
- local-mac-address: MAC address assigned to this device
- phy-connection-type: Interface type between ethernet device and PHY device
......@@ -49,6 +50,7 @@ Example:
<0x0 0X10000000 0x0 0X200>;
reg-names = "enet_csr", "ring_csr", "ring_cmd";
interrupts = <0x0 0x3c 0x4>;
port-id = <0>;
clocks = <&menetclk 0>;
local-mac-address = [00 01 73 00 00 01];
phy-connection-type = "rgmii";
......
......@@ -45,6 +45,10 @@
status = "ok";
};
&sgenet1 {
status = "ok";
};
&xgenet {
status = "ok";
};
......@@ -186,6 +186,16 @@
clock-output-names = "sge0clk";
};
sge1clk: sge1clk@1f21c000 {
compatible = "apm,xgene-device-clock";
#clock-cells = <1>;
clocks = <&socplldiv2 0>;
reg = <0x0 0x1f21c000 0x0 0x1000>;
reg-names = "csr-reg";
csr-mask = <0xc>;
clock-output-names = "sge1clk";
};
xge0clk: xge0clk@1f61c000 {
compatible = "apm,xgene-device-clock";
#clock-cells = <1>;
......@@ -635,6 +645,21 @@
phy-connection-type = "sgmii";
};
sgenet1: ethernet@1f210030 {
compatible = "apm,xgene1-sgenet";
status = "disabled";
reg = <0x0 0x1f210030 0x0 0xd100>,
<0x0 0x1f200000 0x0 0Xc300>,
<0x0 0x1B000000 0x0 0X8000>;
reg-names = "enet_csr", "ring_csr", "ring_cmd";
interrupts = <0x0 0xAC 0x4>;
port-id = <1>;
dma-coherent;
clocks = <&sge1clk 0>;
local-mac-address = [00 00 00 00 00 00];
phy-connection-type = "sgmii";
};
xgenet: ethernet@1f610000 {
compatible = "apm,xgene1-xgenet";
status = "disabled";
......
......@@ -97,6 +97,8 @@ enum xgene_enet_rm {
#define QCOHERENT BIT(4)
#define RECOMBBUF BIT(27)
#define MAC_OFFSET 0x30
#define BLOCK_ETH_CSR_OFFSET 0x2000
#define BLOCK_ETH_RING_IF_OFFSET 0x9000
#define BLOCK_ETH_DIAG_CSR_OFFSET 0xD000
......
......@@ -645,9 +645,11 @@ static int xgene_enet_create_desc_rings(struct net_device *ndev)
struct device *dev = ndev_to_dev(ndev);
struct xgene_enet_desc_ring *rx_ring, *tx_ring, *cp_ring;
struct xgene_enet_desc_ring *buf_pool = NULL;
u8 cpu_bufnum = 0, eth_bufnum = START_ETH_BUFNUM;
u8 bp_bufnum = START_BP_BUFNUM;
u16 ring_id, ring_num = START_RING_NUM;
u8 cpu_bufnum = pdata->cpu_bufnum;
u8 eth_bufnum = pdata->eth_bufnum;
u8 bp_bufnum = pdata->bp_bufnum;
u16 ring_num = pdata->ring_num;
u16 ring_id;
int ret;
/* allocate rx descriptor ring */
......@@ -752,6 +754,22 @@ static const struct net_device_ops xgene_ndev_ops = {
.ndo_set_mac_address = xgene_enet_set_mac_address,
};
static int xgene_get_port_id(struct device *dev, struct xgene_enet_pdata *pdata)
{
u32 id = 0;
int ret;
ret = device_property_read_u32(dev, "port-id", &id);
if (!ret && id > 1) {
dev_err(dev, "Incorrect port-id specified\n");
return -ENODEV;
}
pdata->port_id = id;
return 0;
}
static int xgene_get_mac_address(struct device *dev,
unsigned char *addr)
{
......@@ -843,6 +861,10 @@ static int xgene_enet_get_resources(struct xgene_enet_pdata *pdata)
}
pdata->rx_irq = ret;
ret = xgene_get_port_id(dev, pdata);
if (ret)
return ret;
if (xgene_get_mac_address(dev, ndev->dev_addr) != ETH_ALEN)
eth_hw_addr_random(ndev);
......@@ -866,13 +888,13 @@ static int xgene_enet_get_resources(struct xgene_enet_pdata *pdata)
pdata->clk = NULL;
}
base_addr = pdata->base_addr;
base_addr = pdata->base_addr - (pdata->port_id * MAC_OFFSET);
pdata->eth_csr_addr = base_addr + BLOCK_ETH_CSR_OFFSET;
pdata->eth_ring_if_addr = base_addr + BLOCK_ETH_RING_IF_OFFSET;
pdata->eth_diag_csr_addr = base_addr + BLOCK_ETH_DIAG_CSR_OFFSET;
if (pdata->phy_mode == PHY_INTERFACE_MODE_RGMII ||
pdata->phy_mode == PHY_INTERFACE_MODE_SGMII) {
pdata->mcx_mac_addr = base_addr + BLOCK_ETH_MAC_OFFSET;
pdata->mcx_mac_addr = pdata->base_addr + BLOCK_ETH_MAC_OFFSET;
pdata->mcx_mac_csr_addr = base_addr + BLOCK_ETH_MAC_CSR_OFFSET;
} else {
pdata->mcx_mac_addr = base_addr + BLOCK_AXG_MAC_OFFSET;
......@@ -935,6 +957,24 @@ static void xgene_enet_setup_ops(struct xgene_enet_pdata *pdata)
pdata->rm = RM0;
break;
}
switch (pdata->port_id) {
case 0:
pdata->cpu_bufnum = START_CPU_BUFNUM_0;
pdata->eth_bufnum = START_ETH_BUFNUM_0;
pdata->bp_bufnum = START_BP_BUFNUM_0;
pdata->ring_num = START_RING_NUM_0;
break;
case 1:
pdata->cpu_bufnum = START_CPU_BUFNUM_1;
pdata->eth_bufnum = START_ETH_BUFNUM_1;
pdata->bp_bufnum = START_BP_BUFNUM_1;
pdata->ring_num = START_RING_NUM_1;
break;
default:
break;
}
}
static int xgene_enet_probe(struct platform_device *pdev)
......
......@@ -41,9 +41,15 @@
#define SKB_BUFFER_SIZE (XGENE_ENET_MAX_MTU - NET_IP_ALIGN)
#define NUM_PKT_BUF 64
#define NUM_BUFPOOL 32
#define START_ETH_BUFNUM 2
#define START_BP_BUFNUM 0x22
#define START_RING_NUM 8
#define START_CPU_BUFNUM_0 0
#define START_ETH_BUFNUM_0 2
#define START_BP_BUFNUM_0 0x22
#define START_RING_NUM_0 8
#define START_CPU_BUFNUM_1 12
#define START_ETH_BUFNUM_1 10
#define START_BP_BUFNUM_1 0x2A
#define START_RING_NUM_1 264
#define PHY_POLL_LINK_ON (10 * HZ)
#define PHY_POLL_LINK_OFF (PHY_POLL_LINK_ON / 5)
......@@ -125,6 +131,11 @@ struct xgene_enet_pdata {
struct xgene_mac_ops *mac_ops;
struct xgene_port_ops *port_ops;
struct delayed_work link_work;
u32 port_id;
u8 cpu_bufnum;
u8 eth_bufnum;
u8 bp_bufnum;
u16 ring_num;
};
struct xgene_indirect_ctl {
......
......@@ -226,6 +226,7 @@ static u32 xgene_enet_link_status(struct xgene_enet_pdata *p)
static void xgene_sgmac_init(struct xgene_enet_pdata *p)
{
u32 data, loop = 10;
u32 offset = p->port_id * 4;
xgene_sgmac_reset(p);
......@@ -272,9 +273,9 @@ static void xgene_sgmac_init(struct xgene_enet_pdata *p)
xgene_enet_wr_csr(p, RSIF_RAM_DBG_REG0_ADDR, 0);
/* Bypass traffic gating */
xgene_enet_wr_csr(p, CFG_LINK_AGGR_RESUME_0_ADDR, TX_PORT0);
xgene_enet_wr_csr(p, CFG_LINK_AGGR_RESUME_0_ADDR + offset, TX_PORT0);
xgene_enet_wr_csr(p, CFG_BYPASS_ADDR, RESUME_TX);
xgene_enet_wr_csr(p, SG_RX_DV_GATE_REG_0_ADDR, RESUME_RX0);
xgene_enet_wr_csr(p, SG_RX_DV_GATE_REG_0_ADDR + offset, RESUME_RX0);
}
static void xgene_sgmac_rxtx(struct xgene_enet_pdata *p, u32 bits, bool set)
......@@ -330,13 +331,14 @@ static void xgene_enet_cle_bypass(struct xgene_enet_pdata *p,
u32 dst_ring_num, u16 bufpool_id)
{
u32 data, fpsel;
u32 offset = p->port_id * MAC_OFFSET;
data = CFG_CLE_BYPASS_EN0;
xgene_enet_wr_csr(p, CLE_BYPASS_REG0_0_ADDR, data);
xgene_enet_wr_csr(p, CLE_BYPASS_REG0_0_ADDR + offset, data);
fpsel = xgene_enet_ring_bufnum(bufpool_id) - 0x20;
data = CFG_CLE_DSTQID0(dst_ring_num) | CFG_CLE_FPSEL0(fpsel);
xgene_enet_wr_csr(p, CLE_BYPASS_REG1_0_ADDR, data);
xgene_enet_wr_csr(p, CLE_BYPASS_REG1_0_ADDR + offset, data);
}
static void xgene_enet_shutdown(struct xgene_enet_pdata *p)
......
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