Commit 1121f6b0 authored by Sunil Kumar Kori's avatar Sunil Kumar Kori Committed by David S. Miller

octeontx2-af: Priority flow control configuration support

Prirority based flow control (802.1Qbb)  mechanism is similar to
ethernet pause frames (802.3x) instead pausing all traffic on a link,
PFC allows user to selectively pause traffic according to its class.

Oceteontx2 MAC block (CGX) and CN10K Mac block (RPM) both supports
PFC. As upper layer mbox handler is same for both the MACs, this
patch configures PFC by calling apporopritate callbacks.
Signed-off-by: default avatarSunil Kumar Kori <skori@marvell.com>
Signed-off-by: default avatarHariprasad Kelam <hkelam@marvell.com>
Signed-off-by: default avatarSunil Kovvuri Goutham <sgoutham@marvell.com>
Signed-off-by: default avatarDavid S. Miller <davem@davemloft.net>
parent d957b51f
......@@ -817,6 +817,47 @@ static void cgx_lmac_pause_frm_config(void *cgxd, int lmac_id, bool enable)
cgx_write(cgx, lmac_id, CGXX_SMUX_TX_CTL, cfg);
}
int cgx_lmac_pfc_config(void *cgxd, int lmac_id, u8 tx_pause,
u8 rx_pause, u16 pfc_en)
{
struct cgx *cgx = cgxd;
u64 cfg;
if (!is_lmac_valid(cgx, lmac_id))
return -ENODEV;
/* Return as no traffic classes are requested */
if (tx_pause && !pfc_en)
return 0;
cfg = cgx_read(cgx, lmac_id, CGXX_SMUX_CBFC_CTL);
if (rx_pause) {
cfg |= (CGXX_SMUX_CBFC_CTL_RX_EN |
CGXX_SMUX_CBFC_CTL_BCK_EN |
CGXX_SMUX_CBFC_CTL_DRP_EN);
} else {
cfg &= ~(CGXX_SMUX_CBFC_CTL_RX_EN |
CGXX_SMUX_CBFC_CTL_BCK_EN |
CGXX_SMUX_CBFC_CTL_DRP_EN);
}
if (tx_pause)
cfg |= CGXX_SMUX_CBFC_CTL_TX_EN;
else
cfg &= ~CGXX_SMUX_CBFC_CTL_TX_EN;
cfg = FIELD_SET(CGX_PFC_CLASS_MASK, pfc_en, cfg);
cgx_write(cgx, lmac_id, CGXX_SMUX_CBFC_CTL, cfg);
/* Write source MAC address which will be filled into PFC packet */
cfg = cgx_lmac_addr_get(cgx->cgx_id, lmac_id);
cgx_write(cgx, lmac_id, CGXX_SMUX_SMAC, cfg);
return 0;
}
void cgx_lmac_ptp_config(void *cgxd, int lmac_id, bool enable)
{
struct cgx *cgx = cgxd;
......@@ -1559,6 +1600,7 @@ static struct mac_ops cgx_mac_ops = {
.mac_enadis_ptp_config = cgx_lmac_ptp_config,
.mac_rx_tx_enable = cgx_lmac_rx_tx_enable,
.mac_tx_enable = cgx_lmac_tx_enable,
.pfc_config = cgx_lmac_pfc_config,
};
static int cgx_probe(struct pci_dev *pdev, const struct pci_device_id *id)
......
......@@ -76,6 +76,13 @@
#define CGXX_SMUX_TX_CTL 0x20178
#define CGXX_SMUX_TX_PAUSE_PKT_TIME 0x20110
#define CGXX_SMUX_TX_PAUSE_PKT_INTERVAL 0x20120
#define CGXX_SMUX_SMAC 0x20108
#define CGXX_SMUX_CBFC_CTL 0x20218
#define CGXX_SMUX_CBFC_CTL_RX_EN BIT_ULL(0)
#define CGXX_SMUX_CBFC_CTL_TX_EN BIT_ULL(1)
#define CGXX_SMUX_CBFC_CTL_DRP_EN BIT_ULL(2)
#define CGXX_SMUX_CBFC_CTL_BCK_EN BIT_ULL(3)
#define CGX_PFC_CLASS_MASK GENMASK_ULL(47, 32)
#define CGXX_GMP_GMI_TX_PAUSE_PKT_TIME 0x38230
#define CGXX_GMP_GMI_TX_PAUSE_PKT_INTERVAL 0x38248
#define CGX_SMUX_TX_CTL_L2P_BP_CONV BIT_ULL(7)
......@@ -172,4 +179,6 @@ u64 cgx_lmac_read(int cgx_id, int lmac_id, u64 offset);
int cgx_lmac_addr_update(u8 cgx_id, u8 lmac_id, u8 *mac_addr, u8 index);
u64 cgx_read_dmac_ctrl(void *cgxd, int lmac_id);
u64 cgx_read_dmac_entry(void *cgxd, int index);
int cgx_lmac_pfc_config(void *cgxd, int lmac_id, u8 tx_pause, u8 rx_pause,
u16 pfc_en);
#endif /* CGX_H */
......@@ -110,6 +110,9 @@ struct mac_ops {
int (*mac_rx_tx_enable)(void *cgxd, int lmac_id, bool enable);
int (*mac_tx_enable)(void *cgxd, int lmac_id, bool enable);
int (*pfc_config)(void *cgxd, int lmac_id,
u8 tx_pause, u8 rx_pause, u16 pfc_en);
};
struct cgx {
......
......@@ -172,6 +172,8 @@ M(RPM_STATS, 0x21C, rpm_stats, msg_req, rpm_stats_rsp) \
M(CGX_MAC_ADDR_RESET, 0x21D, cgx_mac_addr_reset, msg_req, msg_rsp) \
M(CGX_MAC_ADDR_UPDATE, 0x21E, cgx_mac_addr_update, cgx_mac_addr_update_req, \
msg_rsp) \
M(CGX_PRIO_FLOW_CTRL_CFG, 0x21F, cgx_prio_flow_ctrl_cfg, cgx_pfc_cfg, \
cgx_pfc_rsp) \
/* NPA mbox IDs (range 0x400 - 0x5FF) */ \
M(NPA_LF_ALLOC, 0x400, npa_lf_alloc, \
npa_lf_alloc_req, npa_lf_alloc_rsp) \
......@@ -609,6 +611,21 @@ struct rpm_stats_rsp {
u64 tx_stats[RPM_TX_STATS_COUNT];
};
struct cgx_pfc_cfg {
struct mbox_msghdr hdr;
u8 rx_pause;
u8 tx_pause;
u16 pfc_en; /* bitmap indicating pfc enabled traffic classes */
};
struct cgx_pfc_rsp {
struct mbox_msghdr hdr;
u8 rx_pause;
u8 tx_pause;
};
/* NPA mbox message formats */
struct npc_set_pkind {
struct mbox_msghdr hdr;
#define OTX2_PRIV_FLAGS_DEFAULT BIT_ULL(0)
......
......@@ -32,6 +32,7 @@ static struct mac_ops rpm_mac_ops = {
.mac_enadis_ptp_config = rpm_lmac_ptp_config,
.mac_rx_tx_enable = rpm_lmac_rx_tx_enable,
.mac_tx_enable = rpm_lmac_tx_enable,
.pfc_config = rpm_lmac_pfc_config,
};
struct mac_ops *rpm_get_mac_ops(void)
......@@ -129,6 +130,85 @@ int rpm_lmac_get_pause_frm_status(void *rpmd, int lmac_id,
return 0;
}
static void rpm_cfg_pfc_quanta_thresh(rpm_t *rpm, int lmac_id, u16 pfc_en,
bool enable)
{
u64 quanta_offset = 0, quanta_thresh = 0, cfg;
int i, shift;
/* Set pause time and interval */
for_each_set_bit(i, (unsigned long *)&pfc_en, 16) {
switch (i) {
case 0:
case 1:
quanta_offset = RPMX_MTI_MAC100X_CL01_PAUSE_QUANTA;
quanta_thresh = RPMX_MTI_MAC100X_CL01_QUANTA_THRESH;
break;
case 2:
case 3:
quanta_offset = RPMX_MTI_MAC100X_CL23_PAUSE_QUANTA;
quanta_thresh = RPMX_MTI_MAC100X_CL23_QUANTA_THRESH;
break;
case 4:
case 5:
quanta_offset = RPMX_MTI_MAC100X_CL45_PAUSE_QUANTA;
quanta_thresh = RPMX_MTI_MAC100X_CL45_QUANTA_THRESH;
break;
case 6:
case 7:
quanta_offset = RPMX_MTI_MAC100X_CL67_PAUSE_QUANTA;
quanta_thresh = RPMX_MTI_MAC100X_CL67_QUANTA_THRESH;
break;
case 8:
case 9:
quanta_offset = RPMX_MTI_MAC100X_CL89_PAUSE_QUANTA;
quanta_thresh = RPMX_MTI_MAC100X_CL89_QUANTA_THRESH;
break;
case 10:
case 11:
quanta_offset = RPMX_MTI_MAC100X_CL1011_PAUSE_QUANTA;
quanta_thresh = RPMX_MTI_MAC100X_CL1011_QUANTA_THRESH;
break;
case 12:
case 13:
quanta_offset = RPMX_MTI_MAC100X_CL1213_PAUSE_QUANTA;
quanta_thresh = RPMX_MTI_MAC100X_CL1213_QUANTA_THRESH;
break;
case 14:
case 15:
quanta_offset = RPMX_MTI_MAC100X_CL1415_PAUSE_QUANTA;
quanta_thresh = RPMX_MTI_MAC100X_CL1415_QUANTA_THRESH;
break;
}
if (!quanta_offset || !quanta_thresh)
continue;
shift = (i % 2) ? 1 : 0;
cfg = rpm_read(rpm, lmac_id, quanta_offset);
if (enable) {
cfg |= ((u64)RPM_DEFAULT_PAUSE_TIME << shift * 16);
} else {
if (!shift)
cfg &= ~GENMASK_ULL(15, 0);
else
cfg &= ~GENMASK_ULL(31, 16);
}
rpm_write(rpm, lmac_id, quanta_offset, cfg);
cfg = rpm_read(rpm, lmac_id, quanta_thresh);
if (enable) {
cfg |= ((u64)(RPM_DEFAULT_PAUSE_TIME / 2) << shift * 16);
} else {
if (!shift)
cfg &= ~GENMASK_ULL(15, 0);
else
cfg &= ~GENMASK_ULL(31, 16);
}
rpm_write(rpm, lmac_id, quanta_thresh, cfg);
}
}
int rpm_lmac_enadis_pause_frm(void *rpmd, int lmac_id, u8 tx_pause,
u8 rx_pause)
{
......@@ -152,8 +232,12 @@ int rpm_lmac_enadis_pause_frm(void *rpmd, int lmac_id, u8 tx_pause,
cfg = rpm_read(rpm, 0, RPMX_CMR_RX_OVR_BP);
if (tx_pause) {
/* Configure CL0 Pause Quanta & threshold for 802.3X frames */
rpm_cfg_pfc_quanta_thresh(rpm, lmac_id, 1, true);
cfg &= ~RPMX_CMR_RX_OVR_BP_EN(lmac_id);
} else {
/* Disable all Pause Quanta & threshold values */
rpm_cfg_pfc_quanta_thresh(rpm, lmac_id, 0xffff, false);
cfg |= RPMX_CMR_RX_OVR_BP_EN(lmac_id);
cfg &= ~RPMX_CMR_RX_OVR_BP_BP(lmac_id);
}
......@@ -166,21 +250,6 @@ void rpm_lmac_pause_frm_config(void *rpmd, int lmac_id, bool enable)
rpm_t *rpm = rpmd;
u64 cfg;
if (enable) {
/* Set pause time and interval */
cfg = rpm_read(rpm, lmac_id,
RPMX_MTI_MAC100X_CL01_PAUSE_QUANTA);
cfg &= ~0xFFFFULL;
rpm_write(rpm, lmac_id, RPMX_MTI_MAC100X_CL01_PAUSE_QUANTA,
cfg | RPM_DEFAULT_PAUSE_TIME);
/* Set pause interval as the hardware default is too short */
cfg = rpm_read(rpm, lmac_id,
RPMX_MTI_MAC100X_CL01_QUANTA_THRESH);
cfg &= ~0xFFFFULL;
rpm_write(rpm, lmac_id, RPMX_MTI_MAC100X_CL01_QUANTA_THRESH,
cfg | (RPM_DEFAULT_PAUSE_TIME / 2));
}
/* ALL pause frames received are completely ignored */
cfg = rpm_read(rpm, lmac_id, RPMX_MTI_MAC100X_COMMAND_CONFIG);
cfg |= RPMX_MTI_MAC100X_COMMAND_CONFIG_RX_P_DISABLE;
......@@ -302,3 +371,48 @@ void rpm_lmac_ptp_config(void *rpmd, int lmac_id, bool enable)
cfg &= ~RPMX_RX_TS_PREPEND;
rpm_write(rpm, lmac_id, RPMX_CMRX_CFG, cfg);
}
int rpm_lmac_pfc_config(void *rpmd, int lmac_id, u8 tx_pause, u8 rx_pause, u16 pfc_en)
{
rpm_t *rpm = rpmd;
u64 cfg;
if (!is_lmac_valid(rpm, lmac_id))
return -ENODEV;
/* reset PFC class quanta and threshold */
rpm_cfg_pfc_quanta_thresh(rpm, lmac_id, 0xffff, false);
cfg = rpm_read(rpm, lmac_id, RPMX_MTI_MAC100X_COMMAND_CONFIG);
if (rx_pause) {
cfg &= ~(RPMX_MTI_MAC100X_COMMAND_CONFIG_RX_P_DISABLE |
RPMX_MTI_MAC100X_COMMAND_CONFIG_PAUSE_IGNORE |
RPMX_MTI_MAC100X_COMMAND_CONFIG_PAUSE_FWD);
} else {
cfg |= (RPMX_MTI_MAC100X_COMMAND_CONFIG_RX_P_DISABLE |
RPMX_MTI_MAC100X_COMMAND_CONFIG_PAUSE_IGNORE |
RPMX_MTI_MAC100X_COMMAND_CONFIG_PAUSE_FWD);
}
if (tx_pause) {
rpm_cfg_pfc_quanta_thresh(rpm, lmac_id, pfc_en, true);
cfg &= ~RPMX_MTI_MAC100X_COMMAND_CONFIG_TX_P_DISABLE;
} else {
rpm_cfg_pfc_quanta_thresh(rpm, lmac_id, 0xfff, false);
cfg |= RPMX_MTI_MAC100X_COMMAND_CONFIG_TX_P_DISABLE;
}
if (!rx_pause && !tx_pause)
cfg &= ~RPMX_MTI_MAC100X_COMMAND_CONFIG_PFC_MODE;
else
cfg |= RPMX_MTI_MAC100X_COMMAND_CONFIG_PFC_MODE;
rpm_write(rpm, lmac_id, RPMX_MTI_MAC100X_COMMAND_CONFIG, cfg);
cfg = rpm_read(rpm, lmac_id, RPMX_CMRX_PRT_CBFC_CTL);
cfg = FIELD_SET(RPM_PFC_CLASS_MASK, pfc_en, cfg);
rpm_write(rpm, lmac_id, RPMX_CMRX_PRT_CBFC_CTL, cfg);
return 0;
}
......@@ -33,7 +33,21 @@
#define RPMX_MTI_MAC100X_COMMAND_CONFIG_PAUSE_IGNORE BIT_ULL(8)
#define RPMX_MTI_MAC100X_COMMAND_CONFIG_PFC_MODE BIT_ULL(19)
#define RPMX_MTI_MAC100X_CL01_PAUSE_QUANTA 0x80A8
#define RPMX_MTI_MAC100X_CL23_PAUSE_QUANTA 0x80B0
#define RPMX_MTI_MAC100X_CL45_PAUSE_QUANTA 0x80B8
#define RPMX_MTI_MAC100X_CL67_PAUSE_QUANTA 0x80C0
#define RPMX_MTI_MAC100X_CL01_QUANTA_THRESH 0x80C8
#define RPMX_MTI_MAC100X_CL23_QUANTA_THRESH 0x80D0
#define RPMX_MTI_MAC100X_CL45_QUANTA_THRESH 0x80D8
#define RPMX_MTI_MAC100X_CL67_QUANTA_THRESH 0x80E0
#define RPMX_MTI_MAC100X_CL89_PAUSE_QUANTA 0x8108
#define RPMX_MTI_MAC100X_CL1011_PAUSE_QUANTA 0x8110
#define RPMX_MTI_MAC100X_CL1213_PAUSE_QUANTA 0x8118
#define RPMX_MTI_MAC100X_CL1415_PAUSE_QUANTA 0x8120
#define RPMX_MTI_MAC100X_CL89_QUANTA_THRESH 0x8128
#define RPMX_MTI_MAC100X_CL1011_QUANTA_THRESH 0x8130
#define RPMX_MTI_MAC100X_CL1213_QUANTA_THRESH 0x8138
#define RPMX_MTI_MAC100X_CL1415_QUANTA_THRESH 0x8140
#define RPM_DEFAULT_PAUSE_TIME 0xFFFF
#define RPMX_CMR_RX_OVR_BP 0x4120
#define RPMX_CMR_RX_OVR_BP_EN(x) BIT_ULL((x) + 8)
......@@ -45,6 +59,18 @@
#define RPM_LMAC_FWI 0xa
#define RPM_TX_EN BIT_ULL(0)
#define RPM_RX_EN BIT_ULL(1)
#define RPMX_CMRX_PRT_CBFC_CTL 0x5B08
#define RPMX_CMRX_PRT_CBFC_CTL_LOGL_EN_RX_SHIFT 33
#define RPMX_CMRX_PRT_CBFC_CTL_PHYS_BP_SHIFT 16
#define RPMX_CMRX_PRT_CBFC_CTL_LOGL_EN_TX_SHIFT 0
#define RPM_PFC_CLASS_MASK GENMASK_ULL(48, 33)
#define RPMX_MTI_MAC100X_CL89_QUANTA_THRESH 0x8128
#define RPMX_MTI_MAC100X_COMMAND_CONFIG_TX_PAD_EN BIT_ULL(11)
#define RPMX_MTI_MAC100X_COMMAND_CONFIG_PAUSE_IGNORE BIT_ULL(8)
#define RPMX_MTI_MAC100X_COMMAND_CONFIG_PAUSE_FWD BIT_ULL(7)
#define RPMX_MTI_MAC100X_CL01_PAUSE_QUANTA 0x80A8
#define RPMX_MTI_MAC100X_CL89_PAUSE_QUANTA 0x8108
#define RPM_DEFAULT_PAUSE_TIME 0xFFFF
/* Function Declarations */
int rpm_get_nr_lmacs(void *rpmd);
......@@ -61,4 +87,6 @@ int rpm_get_rx_stats(void *rpmd, int lmac_id, int idx, u64 *rx_stat);
void rpm_lmac_ptp_config(void *rpmd, int lmac_id, bool enable);
int rpm_lmac_rx_tx_enable(void *rpmd, int lmac_id, bool enable);
int rpm_lmac_tx_enable(void *rpmd, int lmac_id, bool enable);
int rpm_lmac_pfc_config(void *rpmd, int lmac_id, u8 tx_pause, u8 rx_pause,
u16 pfc_en);
#endif /* RPM_H */
......@@ -1079,3 +1079,26 @@ int rvu_mbox_handler_cgx_mac_addr_update(struct rvu *rvu,
rvu_get_cgx_lmac_id(rvu->pf2cgxlmac_map[pf], &cgx_id, &lmac_id);
return cgx_lmac_addr_update(cgx_id, lmac_id, req->mac_addr, req->index);
}
int rvu_mbox_handler_cgx_prio_flow_ctrl_cfg(struct rvu *rvu,
struct cgx_pfc_cfg *req,
struct cgx_pfc_rsp *rsp)
{
int pf = rvu_get_pf(req->hdr.pcifunc);
struct mac_ops *mac_ops;
u8 cgx_id, lmac_id;
void *cgxd;
/* This msg is expected only from PF/VFs that are mapped to CGX LMACs,
* if received from other PF/VF simply ACK, nothing to do.
*/
if (!is_pf_cgxmapped(rvu, pf))
return -ENODEV;
rvu_get_cgx_lmac_id(rvu->pf2cgxlmac_map[pf], &cgx_id, &lmac_id);
cgxd = rvu_cgx_pdata(cgx_id, rvu);
mac_ops = get_mac_ops(cgxd);
return mac_ops->pfc_config(cgxd, lmac_id, req->tx_pause, req->rx_pause,
req->pfc_en);
}
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