提交 883e5151 编写于 作者: M Michael Chan 提交者: David S. Miller

[BNX2]: Print bus information for PCIE devices.

Fix the code to print PCI or PCIE bus information for all devices.
Signed-off-by: NMichael Chan <mchan@broadcom.com>
Signed-off-by: NDavid S. Miller <davem@davemloft.net>
上级 8e6a72c4
......@@ -6040,6 +6040,58 @@ bnx2_get_5709_media(struct bnx2 *bp)
}
}
static void __devinit
bnx2_get_pci_speed(struct bnx2 *bp)
{
u32 reg;
reg = REG_RD(bp, BNX2_PCICFG_MISC_STATUS);
if (reg & BNX2_PCICFG_MISC_STATUS_PCIX_DET) {
u32 clkreg;
bp->flags |= PCIX_FLAG;
clkreg = REG_RD(bp, BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS);
clkreg &= BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET;
switch (clkreg) {
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_133MHZ:
bp->bus_speed_mhz = 133;
break;
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_95MHZ:
bp->bus_speed_mhz = 100;
break;
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_66MHZ:
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_80MHZ:
bp->bus_speed_mhz = 66;
break;
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_48MHZ:
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_55MHZ:
bp->bus_speed_mhz = 50;
break;
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_LOW:
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_32MHZ:
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_38MHZ:
bp->bus_speed_mhz = 33;
break;
}
}
else {
if (reg & BNX2_PCICFG_MISC_STATUS_M66EN)
bp->bus_speed_mhz = 66;
else
bp->bus_speed_mhz = 33;
}
if (reg & BNX2_PCICFG_MISC_STATUS_32BIT_DET)
bp->flags |= PCI_32BIT_FLAG;
}
static int __devinit
bnx2_init_board(struct pci_dev *pdev, struct net_device *dev)
{
......@@ -6118,7 +6170,15 @@ bnx2_init_board(struct pci_dev *pdev, struct net_device *dev)
bp->chip_id = REG_RD(bp, BNX2_MISC_ID);
if (CHIP_NUM(bp) != CHIP_NUM_5709) {
if (CHIP_NUM(bp) == CHIP_NUM_5709) {
if (pci_find_capability(pdev, PCI_CAP_ID_EXP) == 0) {
dev_err(&pdev->dev,
"Cannot find PCIE capability, aborting.\n");
rc = -EIO;
goto err_out_unmap;
}
bp->flags |= PCIE_FLAG;
} else {
bp->pcix_cap = pci_find_capability(pdev, PCI_CAP_ID_PCIX);
if (bp->pcix_cap == 0) {
dev_err(&pdev->dev,
......@@ -6153,51 +6213,8 @@ bnx2_init_board(struct pci_dev *pdev, struct net_device *dev)
goto err_out_unmap;
}
/* Get bus information. */
reg = REG_RD(bp, BNX2_PCICFG_MISC_STATUS);
if (reg & BNX2_PCICFG_MISC_STATUS_PCIX_DET) {
u32 clkreg;
bp->flags |= PCIX_FLAG;
clkreg = REG_RD(bp, BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS);
clkreg &= BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET;
switch (clkreg) {
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_133MHZ:
bp->bus_speed_mhz = 133;
break;
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_95MHZ:
bp->bus_speed_mhz = 100;
break;
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_66MHZ:
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_80MHZ:
bp->bus_speed_mhz = 66;
break;
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_48MHZ:
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_55MHZ:
bp->bus_speed_mhz = 50;
break;
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_LOW:
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_32MHZ:
case BNX2_PCICFG_PCI_CLOCK_CONTROL_BITS_PCI_CLK_SPD_DET_38MHZ:
bp->bus_speed_mhz = 33;
break;
}
}
else {
if (reg & BNX2_PCICFG_MISC_STATUS_M66EN)
bp->bus_speed_mhz = 66;
else
bp->bus_speed_mhz = 33;
}
if (reg & BNX2_PCICFG_MISC_STATUS_32BIT_DET)
bp->flags |= PCI_32BIT_FLAG;
if (!(bp->flags & PCIE_FLAG))
bnx2_get_pci_speed(bp);
/* 5706A0 may falsely detect SERR and PERR. */
if (CHIP_ID(bp) == CHIP_ID_5706_A0) {
......@@ -6381,6 +6398,26 @@ bnx2_init_board(struct pci_dev *pdev, struct net_device *dev)
return rc;
}
static char * __devinit
bnx2_bus_string(struct bnx2 *bp, char *str)
{
char *s = str;
if (bp->flags & PCIE_FLAG) {
s += sprintf(s, "PCI Express");
} else {
s += sprintf(s, "PCI");
if (bp->flags & PCIX_FLAG)
s += sprintf(s, "-X");
if (bp->flags & PCI_32BIT_FLAG)
s += sprintf(s, " 32-bit");
else
s += sprintf(s, " 64-bit");
s += sprintf(s, " %dMHz", bp->bus_speed_mhz);
}
return str;
}
static int __devinit
bnx2_init_one(struct pci_dev *pdev, const struct pci_device_id *ent)
{
......@@ -6388,6 +6425,7 @@ bnx2_init_one(struct pci_dev *pdev, const struct pci_device_id *ent)
struct net_device *dev = NULL;
struct bnx2 *bp;
int rc, i;
char str[40];
if (version_printed++ == 0)
printk(KERN_INFO "%s", version);
......@@ -6456,15 +6494,13 @@ bnx2_init_one(struct pci_dev *pdev, const struct pci_device_id *ent)
return rc;
}
printk(KERN_INFO "%s: %s (%c%d) PCI%s %s %dMHz found at mem %lx, "
printk(KERN_INFO "%s: %s (%c%d) %s found at mem %lx, "
"IRQ %d, ",
dev->name,
bp->name,
((CHIP_ID(bp) & 0xf000) >> 12) + 'A',
((CHIP_ID(bp) & 0x0ff0) >> 4),
((bp->flags & PCIX_FLAG) ? "-X" : ""),
((bp->flags & PCI_32BIT_FLAG) ? "32-bit" : "64-bit"),
bp->bus_speed_mhz,
bnx2_bus_string(bp, str),
dev->base_addr,
bp->pdev->irq);
......
......@@ -6476,6 +6476,7 @@ struct bnx2 {
#define ASF_ENABLE_FLAG 0x00000040
#define MSI_CAP_FLAG 0x00000080
#define ONE_SHOT_MSI_FLAG 0x00000100
#define PCIE_FLAG 0x00000200
/* Put tx producer and consumer fields in separate cache lines. */
......
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