Commit 7705736f authored by Matt Carlson's avatar Matt Carlson Committed by David S. Miller

tg3: Remove tg3_dump_state()

The tg3_dump_state() function is commented out and doesn't get used much
when debugging efforts are underway.  The chip architecture has also
changed enough that any debugging effort that might use it would have to
tailor it to the capabilities of the hardware.  This patch just removes
the function entirely.
Signed-off-by: default avatarMatt Carlson <mcarlson@broadcom.com>
Reviewed-by: default avatarMichael Chan <mchan@broadcom.com>
Reviewed-by: default avatarBenjamin Li <benli@broadcom.com>
Signed-off-by: default avatarDavid S. Miller <davem@davemloft.net>
parent 859a5887
......@@ -8925,236 +8925,6 @@ static int tg3_open(struct net_device *dev)
return err;
}
#if 0
/*static*/ void tg3_dump_state(struct tg3 *tp)
{
u32 val32, val32_2, val32_3, val32_4, val32_5;
u16 val16;
int i;
struct tg3_hw_status *sblk = tp->napi[0]->hw_status;
pci_read_config_word(tp->pdev, PCI_STATUS, &val16);
pci_read_config_dword(tp->pdev, TG3PCI_PCISTATE, &val32);
printk("DEBUG: PCI status [%04x] TG3PCI state[%08x]\n",
val16, val32);
/* MAC block */
printk("DEBUG: MAC_MODE[%08x] MAC_STATUS[%08x]\n",
tr32(MAC_MODE), tr32(MAC_STATUS));
printk(" MAC_EVENT[%08x] MAC_LED_CTRL[%08x]\n",
tr32(MAC_EVENT), tr32(MAC_LED_CTRL));
printk("DEBUG: MAC_TX_MODE[%08x] MAC_TX_STATUS[%08x]\n",
tr32(MAC_TX_MODE), tr32(MAC_TX_STATUS));
printk(" MAC_RX_MODE[%08x] MAC_RX_STATUS[%08x]\n",
tr32(MAC_RX_MODE), tr32(MAC_RX_STATUS));
/* Send data initiator control block */
printk("DEBUG: SNDDATAI_MODE[%08x] SNDDATAI_STATUS[%08x]\n",
tr32(SNDDATAI_MODE), tr32(SNDDATAI_STATUS));
printk(" SNDDATAI_STATSCTRL[%08x]\n",
tr32(SNDDATAI_STATSCTRL));
/* Send data completion control block */
printk("DEBUG: SNDDATAC_MODE[%08x]\n", tr32(SNDDATAC_MODE));
/* Send BD ring selector block */
printk("DEBUG: SNDBDS_MODE[%08x] SNDBDS_STATUS[%08x]\n",
tr32(SNDBDS_MODE), tr32(SNDBDS_STATUS));
/* Send BD initiator control block */
printk("DEBUG: SNDBDI_MODE[%08x] SNDBDI_STATUS[%08x]\n",
tr32(SNDBDI_MODE), tr32(SNDBDI_STATUS));
/* Send BD completion control block */
printk("DEBUG: SNDBDC_MODE[%08x]\n", tr32(SNDBDC_MODE));
/* Receive list placement control block */
printk("DEBUG: RCVLPC_MODE[%08x] RCVLPC_STATUS[%08x]\n",
tr32(RCVLPC_MODE), tr32(RCVLPC_STATUS));
printk(" RCVLPC_STATSCTRL[%08x]\n",
tr32(RCVLPC_STATSCTRL));
/* Receive data and receive BD initiator control block */
printk("DEBUG: RCVDBDI_MODE[%08x] RCVDBDI_STATUS[%08x]\n",
tr32(RCVDBDI_MODE), tr32(RCVDBDI_STATUS));
/* Receive data completion control block */
printk("DEBUG: RCVDCC_MODE[%08x]\n",
tr32(RCVDCC_MODE));
/* Receive BD initiator control block */
printk("DEBUG: RCVBDI_MODE[%08x] RCVBDI_STATUS[%08x]\n",
tr32(RCVBDI_MODE), tr32(RCVBDI_STATUS));
/* Receive BD completion control block */
printk("DEBUG: RCVCC_MODE[%08x] RCVCC_STATUS[%08x]\n",
tr32(RCVCC_MODE), tr32(RCVCC_STATUS));
/* Receive list selector control block */
printk("DEBUG: RCVLSC_MODE[%08x] RCVLSC_STATUS[%08x]\n",
tr32(RCVLSC_MODE), tr32(RCVLSC_STATUS));
/* Mbuf cluster free block */
printk("DEBUG: MBFREE_MODE[%08x] MBFREE_STATUS[%08x]\n",
tr32(MBFREE_MODE), tr32(MBFREE_STATUS));
/* Host coalescing control block */
printk("DEBUG: HOSTCC_MODE[%08x] HOSTCC_STATUS[%08x]\n",
tr32(HOSTCC_MODE), tr32(HOSTCC_STATUS));
printk("DEBUG: HOSTCC_STATS_BLK_HOST_ADDR[%08x%08x]\n",
tr32(HOSTCC_STATS_BLK_HOST_ADDR + TG3_64BIT_REG_HIGH),
tr32(HOSTCC_STATS_BLK_HOST_ADDR + TG3_64BIT_REG_LOW));
printk("DEBUG: HOSTCC_STATUS_BLK_HOST_ADDR[%08x%08x]\n",
tr32(HOSTCC_STATUS_BLK_HOST_ADDR + TG3_64BIT_REG_HIGH),
tr32(HOSTCC_STATUS_BLK_HOST_ADDR + TG3_64BIT_REG_LOW));
printk("DEBUG: HOSTCC_STATS_BLK_NIC_ADDR[%08x]\n",
tr32(HOSTCC_STATS_BLK_NIC_ADDR));
printk("DEBUG: HOSTCC_STATUS_BLK_NIC_ADDR[%08x]\n",
tr32(HOSTCC_STATUS_BLK_NIC_ADDR));
/* Memory arbiter control block */
printk("DEBUG: MEMARB_MODE[%08x] MEMARB_STATUS[%08x]\n",
tr32(MEMARB_MODE), tr32(MEMARB_STATUS));
/* Buffer manager control block */
printk("DEBUG: BUFMGR_MODE[%08x] BUFMGR_STATUS[%08x]\n",
tr32(BUFMGR_MODE), tr32(BUFMGR_STATUS));
printk("DEBUG: BUFMGR_MB_POOL_ADDR[%08x] BUFMGR_MB_POOL_SIZE[%08x]\n",
tr32(BUFMGR_MB_POOL_ADDR), tr32(BUFMGR_MB_POOL_SIZE));
printk("DEBUG: BUFMGR_DMA_DESC_POOL_ADDR[%08x] "
"BUFMGR_DMA_DESC_POOL_SIZE[%08x]\n",
tr32(BUFMGR_DMA_DESC_POOL_ADDR),
tr32(BUFMGR_DMA_DESC_POOL_SIZE));
/* Read DMA control block */
printk("DEBUG: RDMAC_MODE[%08x] RDMAC_STATUS[%08x]\n",
tr32(RDMAC_MODE), tr32(RDMAC_STATUS));
/* Write DMA control block */
printk("DEBUG: WDMAC_MODE[%08x] WDMAC_STATUS[%08x]\n",
tr32(WDMAC_MODE), tr32(WDMAC_STATUS));
/* DMA completion block */
printk("DEBUG: DMAC_MODE[%08x]\n",
tr32(DMAC_MODE));
/* GRC block */
printk("DEBUG: GRC_MODE[%08x] GRC_MISC_CFG[%08x]\n",
tr32(GRC_MODE), tr32(GRC_MISC_CFG));
printk("DEBUG: GRC_LOCAL_CTRL[%08x]\n",
tr32(GRC_LOCAL_CTRL));
/* TG3_BDINFOs */
printk("DEBUG: RCVDBDI_JUMBO_BD[%08x%08x:%08x:%08x]\n",
tr32(RCVDBDI_JUMBO_BD + 0x0),
tr32(RCVDBDI_JUMBO_BD + 0x4),
tr32(RCVDBDI_JUMBO_BD + 0x8),
tr32(RCVDBDI_JUMBO_BD + 0xc));
printk("DEBUG: RCVDBDI_STD_BD[%08x%08x:%08x:%08x]\n",
tr32(RCVDBDI_STD_BD + 0x0),
tr32(RCVDBDI_STD_BD + 0x4),
tr32(RCVDBDI_STD_BD + 0x8),
tr32(RCVDBDI_STD_BD + 0xc));
printk("DEBUG: RCVDBDI_MINI_BD[%08x%08x:%08x:%08x]\n",
tr32(RCVDBDI_MINI_BD + 0x0),
tr32(RCVDBDI_MINI_BD + 0x4),
tr32(RCVDBDI_MINI_BD + 0x8),
tr32(RCVDBDI_MINI_BD + 0xc));
tg3_read_mem(tp, NIC_SRAM_SEND_RCB + 0x0, &val32);
tg3_read_mem(tp, NIC_SRAM_SEND_RCB + 0x4, &val32_2);
tg3_read_mem(tp, NIC_SRAM_SEND_RCB + 0x8, &val32_3);
tg3_read_mem(tp, NIC_SRAM_SEND_RCB + 0xc, &val32_4);
printk("DEBUG: SRAM_SEND_RCB_0[%08x%08x:%08x:%08x]\n",
val32, val32_2, val32_3, val32_4);
tg3_read_mem(tp, NIC_SRAM_RCV_RET_RCB + 0x0, &val32);
tg3_read_mem(tp, NIC_SRAM_RCV_RET_RCB + 0x4, &val32_2);
tg3_read_mem(tp, NIC_SRAM_RCV_RET_RCB + 0x8, &val32_3);
tg3_read_mem(tp, NIC_SRAM_RCV_RET_RCB + 0xc, &val32_4);
printk("DEBUG: SRAM_RCV_RET_RCB_0[%08x%08x:%08x:%08x]\n",
val32, val32_2, val32_3, val32_4);
tg3_read_mem(tp, NIC_SRAM_STATUS_BLK + 0x0, &val32);
tg3_read_mem(tp, NIC_SRAM_STATUS_BLK + 0x4, &val32_2);
tg3_read_mem(tp, NIC_SRAM_STATUS_BLK + 0x8, &val32_3);
tg3_read_mem(tp, NIC_SRAM_STATUS_BLK + 0xc, &val32_4);
tg3_read_mem(tp, NIC_SRAM_STATUS_BLK + 0x10, &val32_5);
printk("DEBUG: SRAM_STATUS_BLK[%08x:%08x:%08x:%08x:%08x]\n",
val32, val32_2, val32_3, val32_4, val32_5);
/* SW status block */
printk(KERN_DEBUG
"Host status block [%08x:%08x:(%04x:%04x:%04x):(%04x:%04x)]\n",
sblk->status,
sblk->status_tag,
sblk->rx_jumbo_consumer,
sblk->rx_consumer,
sblk->rx_mini_consumer,
sblk->idx[0].rx_producer,
sblk->idx[0].tx_consumer);
/* SW statistics block */
printk("DEBUG: Host statistics block [%08x:%08x:%08x:%08x]\n",
((u32 *)tp->hw_stats)[0],
((u32 *)tp->hw_stats)[1],
((u32 *)tp->hw_stats)[2],
((u32 *)tp->hw_stats)[3]);
/* Mailboxes */
printk("DEBUG: SNDHOST_PROD[%08x%08x] SNDNIC_PROD[%08x%08x]\n",
tr32_mailbox(MAILBOX_SNDHOST_PROD_IDX_0 + 0x0),
tr32_mailbox(MAILBOX_SNDHOST_PROD_IDX_0 + 0x4),
tr32_mailbox(MAILBOX_SNDNIC_PROD_IDX_0 + 0x0),
tr32_mailbox(MAILBOX_SNDNIC_PROD_IDX_0 + 0x4));
/* NIC side send descriptors. */
for (i = 0; i < 6; i++) {
unsigned long txd;
txd = tp->regs + NIC_SRAM_WIN_BASE + NIC_SRAM_TX_BUFFER_DESC
+ (i * sizeof(struct tg3_tx_buffer_desc));
printk("DEBUG: NIC TXD(%d)[%08x:%08x:%08x:%08x]\n",
i,
readl(txd + 0x0), readl(txd + 0x4),
readl(txd + 0x8), readl(txd + 0xc));
}
/* NIC side RX descriptors. */
for (i = 0; i < 6; i++) {
unsigned long rxd;
rxd = tp->regs + NIC_SRAM_WIN_BASE + NIC_SRAM_RX_BUFFER_DESC
+ (i * sizeof(struct tg3_rx_buffer_desc));
printk("DEBUG: NIC RXD_STD(%d)[0][%08x:%08x:%08x:%08x]\n",
i,
readl(rxd + 0x0), readl(rxd + 0x4),
readl(rxd + 0x8), readl(rxd + 0xc));
rxd += (4 * sizeof(u32));
printk("DEBUG: NIC RXD_STD(%d)[1][%08x:%08x:%08x:%08x]\n",
i,
readl(rxd + 0x0), readl(rxd + 0x4),
readl(rxd + 0x8), readl(rxd + 0xc));
}
for (i = 0; i < 6; i++) {
unsigned long rxd;
rxd = tp->regs + NIC_SRAM_WIN_BASE + NIC_SRAM_RX_JUMBO_BUFFER_DESC
+ (i * sizeof(struct tg3_rx_buffer_desc));
printk("DEBUG: NIC RXD_JUMBO(%d)[0][%08x:%08x:%08x:%08x]\n",
i,
readl(rxd + 0x0), readl(rxd + 0x4),
readl(rxd + 0x8), readl(rxd + 0xc));
rxd += (4 * sizeof(u32));
printk("DEBUG: NIC RXD_JUMBO(%d)[1][%08x:%08x:%08x:%08x]\n",
i,
readl(rxd + 0x0), readl(rxd + 0x4),
readl(rxd + 0x8), readl(rxd + 0xc));
}
}
#endif
static struct net_device_stats *tg3_get_stats(struct net_device *);
static struct tg3_ethtool_stats *tg3_get_estats(struct tg3 *);
......@@ -9173,9 +8943,6 @@ static int tg3_close(struct net_device *dev)
tg3_phy_stop(tp);
tg3_full_lock(tp, 1);
#if 0
tg3_dump_state(tp);
#endif
tg3_disable_ints(tp);
......
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