forked from ~ljy/RK356X_SDK_RELEASE

hc
2024-05-10 9999e48639b3cecb08ffb37358bcba3b48161b29
kernel/drivers/net/ethernet/stmicro/stmmac/stmmac_main.c
....@@ -1,20 +1,10 @@
1
+// SPDX-License-Identifier: GPL-2.0-only
12 /*******************************************************************************
23 This is the driver for the ST MAC 10/100/1000 on-chip Ethernet controllers.
34 ST Ethernet IPs are built around a Synopsys IP Core.
45
56 Copyright(C) 2007-2011 STMicroelectronics Ltd
67
7
- This program is free software; you can redistribute it and/or modify it
8
- under the terms and conditions of the GNU General Public License,
9
- version 2, as published by the Free Software Foundation.
10
-
11
- This program is distributed in the hope it will be useful, but WITHOUT
12
- ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
13
- FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
14
- more details.
15
-
16
- The full GNU General Public License is included in this distribution in
17
- the file called "COPYING".
188
199 Author: Giuseppe Cavallaro <peppe.cavallaro@st.com>
2010
....@@ -38,6 +28,7 @@
3828 #include <linux/if_vlan.h>
3929 #include <linux/dma-mapping.h>
4030 #include <linux/slab.h>
31
+#include <linux/pm_runtime.h>
4132 #include <linux/prefetch.h>
4233 #include <linux/pinctrl/consumer.h>
4334 #ifdef CONFIG_DEBUG_FS
....@@ -45,6 +36,7 @@
4536 #include <linux/seq_file.h>
4637 #endif /* CONFIG_DEBUG_FS */
4738 #include <linux/net_tstamp.h>
39
+#include <linux/phylink.h>
4840 #include <linux/udp.h>
4941 #include <net/pkt_cls.h>
5042 #include "stmmac_ptp.h"
....@@ -54,6 +46,13 @@
5446 #include "dwmac1000.h"
5547 #include "dwxgmac2.h"
5648 #include "hwif.h"
49
+
50
+/* As long as the interface is active, we keep the timestamping counter enabled
51
+ * with fine resolution and binary rollover. This avoid non-monotonic behavior
52
+ * (clock jumps) when changing timestamping settings at runtime.
53
+ */
54
+#define STMMAC_HWTS_ACTIVE (PTP_TCR_TSENA | PTP_TCR_TSCFUPDT | \
55
+ PTP_TCR_TSCTRLSSR)
5756
5857 #define STMMAC_ALIGN(x) ALIGN(ALIGN(x, SMP_CACHE_BYTES), 16)
5958 #define TSO_MAX_BUFF_SIZE (SZ_16K - 1)
....@@ -72,10 +71,10 @@
7271 module_param(phyaddr, int, 0444);
7372 MODULE_PARM_DESC(phyaddr, "Physical device address");
7473
75
-#define STMMAC_TX_THRESH (DMA_TX_SIZE / 4)
76
-#define STMMAC_RX_THRESH (DMA_RX_SIZE / 4)
74
+#define STMMAC_TX_THRESH(x) ((x)->dma_tx_size / 4)
75
+#define STMMAC_RX_THRESH(x) ((x)->dma_rx_size / 4)
7776
78
-static int flow_ctrl = FLOW_OFF;
77
+static int flow_ctrl = FLOW_AUTO;
7978 module_param(flow_ctrl, int, 0644);
8079 MODULE_PARM_DESC(flow_ctrl, "Flow control ability [on/off]");
8180
....@@ -103,7 +102,7 @@
103102 static int eee_timer = STMMAC_DEFAULT_LPI_TIMER;
104103 module_param(eee_timer, int, 0644);
105104 MODULE_PARM_DESC(eee_timer, "LPI tx expiration time in msec");
106
-#define STMMAC_LPI_T(x) (jiffies + msecs_to_jiffies(x))
105
+#define STMMAC_LPI_T(x) (jiffies + usecs_to_jiffies(x))
107106
108107 /* By default the driver will use the ring mode to manage tx and rx descriptors,
109108 * but allow user to force to use the chain instead of the ring
....@@ -115,11 +114,34 @@
115114 static irqreturn_t stmmac_interrupt(int irq, void *dev_id);
116115
117116 #ifdef CONFIG_DEBUG_FS
118
-static int stmmac_init_fs(struct net_device *dev);
117
+static const struct net_device_ops stmmac_netdev_ops;
118
+static void stmmac_init_fs(struct net_device *dev);
119119 static void stmmac_exit_fs(struct net_device *dev);
120120 #endif
121121
122122 #define STMMAC_COAL_TIMER(x) (jiffies + usecs_to_jiffies(x))
123
+
124
+int stmmac_bus_clks_config(struct stmmac_priv *priv, bool enabled)
125
+{
126
+ int ret = 0;
127
+
128
+ if (enabled) {
129
+ ret = clk_prepare_enable(priv->plat->stmmac_clk);
130
+ if (ret)
131
+ return ret;
132
+ ret = clk_prepare_enable(priv->plat->pclk);
133
+ if (ret) {
134
+ clk_disable_unprepare(priv->plat->stmmac_clk);
135
+ return ret;
136
+ }
137
+ } else {
138
+ clk_disable_unprepare(priv->plat->stmmac_clk);
139
+ clk_disable_unprepare(priv->plat->pclk);
140
+ }
141
+
142
+ return ret;
143
+}
144
+EXPORT_SYMBOL_GPL(stmmac_bus_clks_config);
123145
124146 /**
125147 * stmmac_verify_args - verify the driver parameters.
....@@ -156,7 +178,10 @@
156178 for (queue = 0; queue < maxq; queue++) {
157179 struct stmmac_channel *ch = &priv->channel[queue];
158180
159
- napi_disable(&ch->napi);
181
+ if (queue < rx_queues_cnt)
182
+ napi_disable(&ch->rx_napi);
183
+ if (queue < tx_queues_cnt)
184
+ napi_disable(&ch->tx_napi);
160185 }
161186 }
162187
....@@ -174,7 +199,10 @@
174199 for (queue = 0; queue < maxq; queue++) {
175200 struct stmmac_channel *ch = &priv->channel[queue];
176201
177
- napi_enable(&ch->napi);
202
+ if (queue < rx_queues_cnt)
203
+ napi_enable(&ch->rx_napi);
204
+ if (queue < tx_queues_cnt)
205
+ napi_enable(&ch->tx_napi);
178206 }
179207 }
180208
....@@ -273,7 +301,7 @@
273301 if (tx_q->dirty_tx > tx_q->cur_tx)
274302 avail = tx_q->dirty_tx - tx_q->cur_tx - 1;
275303 else
276
- avail = DMA_TX_SIZE - tx_q->cur_tx + tx_q->dirty_tx - 1;
304
+ avail = priv->dma_tx_size - tx_q->cur_tx + tx_q->dirty_tx - 1;
277305
278306 return avail;
279307 }
....@@ -291,24 +319,9 @@
291319 if (rx_q->dirty_rx <= rx_q->cur_rx)
292320 dirty = rx_q->cur_rx - rx_q->dirty_rx;
293321 else
294
- dirty = DMA_RX_SIZE - rx_q->dirty_rx + rx_q->cur_rx;
322
+ dirty = priv->dma_rx_size - rx_q->dirty_rx + rx_q->cur_rx;
295323
296324 return dirty;
297
-}
298
-
299
-/**
300
- * stmmac_hw_fix_mac_speed - callback for speed selection
301
- * @priv: driver private structure
302
- * Description: on some platforms (e.g. ST), some HW system configuration
303
- * registers have to be set according to the link speed negotiated.
304
- */
305
-static inline void stmmac_hw_fix_mac_speed(struct stmmac_priv *priv)
306
-{
307
- struct net_device *ndev = priv->dev;
308
- struct phy_device *phydev = ndev->phydev;
309
-
310
- if (likely(priv->plat->fix_mac_speed))
311
- priv->plat->fix_mac_speed(priv->plat->bsp_priv, phydev->speed);
312325 }
313326
314327 /**
....@@ -351,7 +364,7 @@
351364
352365 /**
353366 * stmmac_eee_ctrl_timer - EEE TX SW timer.
354
- * @arg : data hook
367
+ * @t: timer_list struct containing private info
355368 * Description:
356369 * if there is no data transfer and if we are not in LPI state,
357370 * then MAC Transmitter can be moved to LPI state.
....@@ -361,7 +374,7 @@
361374 struct stmmac_priv *priv = from_timer(priv, t, eee_ctrl_timer);
362375
363376 stmmac_enable_eee_mode(priv);
364
- mod_timer(&priv->eee_ctrl_timer, STMMAC_LPI_T(eee_timer));
377
+ mod_timer(&priv->eee_ctrl_timer, STMMAC_LPI_T(priv->tx_lpi_timer));
365378 }
366379
367380 /**
....@@ -374,67 +387,43 @@
374387 */
375388 bool stmmac_eee_init(struct stmmac_priv *priv)
376389 {
377
- struct net_device *ndev = priv->dev;
378
- int interface = priv->plat->interface;
379
- bool ret = false;
380
-
381
- if ((interface != PHY_INTERFACE_MODE_MII) &&
382
- (interface != PHY_INTERFACE_MODE_GMII) &&
383
- !phy_interface_mode_is_rgmii(interface))
384
- goto out;
390
+ int eee_tw_timer = priv->eee_tw_timer;
385391
386392 /* Using PCS we cannot dial with the phy registers at this stage
387393 * so we do not support extra feature like EEE.
388394 */
389
- if ((priv->hw->pcs == STMMAC_PCS_RGMII) ||
390
- (priv->hw->pcs == STMMAC_PCS_TBI) ||
391
- (priv->hw->pcs == STMMAC_PCS_RTBI))
392
- goto out;
395
+ if (priv->hw->pcs == STMMAC_PCS_TBI ||
396
+ priv->hw->pcs == STMMAC_PCS_RTBI)
397
+ return false;
393398
394
- /* MAC core supports the EEE feature. */
395
- if (priv->dma_cap.eee) {
396
- int tx_lpi_timer = priv->tx_lpi_timer;
399
+ /* Check if MAC core supports the EEE feature. */
400
+ if (!priv->dma_cap.eee)
401
+ return false;
397402
398
- /* Check if the PHY supports EEE */
399
- if (phy_init_eee(ndev->phydev, 1)) {
400
- /* To manage at run-time if the EEE cannot be supported
401
- * anymore (for example because the lp caps have been
402
- * changed).
403
- * In that case the driver disable own timers.
404
- */
405
- mutex_lock(&priv->lock);
406
- if (priv->eee_active) {
407
- netdev_dbg(priv->dev, "disable EEE\n");
408
- del_timer_sync(&priv->eee_ctrl_timer);
409
- stmmac_set_eee_timer(priv, priv->hw, 0,
410
- tx_lpi_timer);
411
- }
412
- priv->eee_active = 0;
413
- mutex_unlock(&priv->lock);
414
- goto out;
403
+ mutex_lock(&priv->lock);
404
+
405
+ /* Check if it needs to be deactivated */
406
+ if (!priv->eee_active) {
407
+ if (priv->eee_enabled) {
408
+ netdev_dbg(priv->dev, "disable EEE\n");
409
+ del_timer_sync(&priv->eee_ctrl_timer);
410
+ stmmac_set_eee_timer(priv, priv->hw, 0, eee_tw_timer);
415411 }
416
- /* Activate the EEE and start timers */
417
- mutex_lock(&priv->lock);
418
- if (!priv->eee_active) {
419
- priv->eee_active = 1;
420
- timer_setup(&priv->eee_ctrl_timer,
421
- stmmac_eee_ctrl_timer, 0);
422
- mod_timer(&priv->eee_ctrl_timer,
423
- STMMAC_LPI_T(eee_timer));
424
-
425
- stmmac_set_eee_timer(priv, priv->hw,
426
- STMMAC_DEFAULT_LIT_LS, tx_lpi_timer);
427
- }
428
- /* Set HW EEE according to the speed */
429
- stmmac_set_eee_pls(priv, priv->hw, ndev->phydev->link);
430
-
431
- ret = true;
432412 mutex_unlock(&priv->lock);
433
-
434
- netdev_dbg(priv->dev, "Energy-Efficient Ethernet initialized\n");
413
+ return false;
435414 }
436
-out:
437
- return ret;
415
+
416
+ if (priv->eee_active && !priv->eee_enabled) {
417
+ timer_setup(&priv->eee_ctrl_timer, stmmac_eee_ctrl_timer, 0);
418
+ stmmac_set_eee_timer(priv, priv->hw, STMMAC_DEFAULT_LIT_LS,
419
+ eee_tw_timer);
420
+ }
421
+
422
+ mod_timer(&priv->eee_ctrl_timer, STMMAC_LPI_T(priv->tx_lpi_timer));
423
+
424
+ mutex_unlock(&priv->lock);
425
+ netdev_dbg(priv->dev, "Energy-Efficient Ethernet initialized\n");
426
+ return true;
438427 }
439428
440429 /* stmmac_get_tx_hwtstamp - get HW TX timestamps
....@@ -449,6 +438,7 @@
449438 struct dma_desc *p, struct sk_buff *skb)
450439 {
451440 struct skb_shared_hwtstamps shhwtstamp;
441
+ bool found = false;
452442 u64 ns = 0;
453443
454444 if (!priv->hwts_tx_en)
....@@ -460,9 +450,13 @@
460450
461451 /* check tx tstamp status */
462452 if (stmmac_get_tx_timestamp_status(priv, p)) {
463
- /* get the valid tstamp */
464453 stmmac_get_timestamp(priv, p, priv->adv_ts, &ns);
454
+ found = true;
455
+ } else if (!stmmac_get_mac_tx_timestamp(priv, priv->hw, &ns)) {
456
+ found = true;
457
+ }
465458
459
+ if (found) {
466460 memset(&shhwtstamp, 0, sizeof(struct skb_shared_hwtstamps));
467461 shhwtstamp.hwtstamp = ns_to_ktime(ns);
468462
....@@ -470,8 +464,6 @@
470464 /* pass tstamp to stack */
471465 skb_tstamp_tx(skb, &shhwtstamp);
472466 }
473
-
474
- return;
475467 }
476468
477469 /* stmmac_get_rx_hwtstamp - get HW RX timestamps
....@@ -508,7 +500,6 @@
508500 }
509501 }
510502
511
-#ifdef CONFIG_STMMAC_PTP
512503 /**
513504 * stmmac_hwtstamp_set - control hardware timestamping.
514505 * @dev: device pointer.
....@@ -524,8 +515,6 @@
524515 {
525516 struct stmmac_priv *priv = netdev_priv(dev);
526517 struct hwtstamp_config config;
527
- struct timespec64 now;
528
- u64 temp = 0;
529518 u32 ptp_v2 = 0;
530519 u32 tstamp_all = 0;
531520 u32 ptp_over_ipv4_udp = 0;
....@@ -534,11 +523,6 @@
534523 u32 snap_type_sel = 0;
535524 u32 ts_master_en = 0;
536525 u32 ts_event_en = 0;
537
- u32 sec_inc = 0;
538
- u32 value = 0;
539
- bool xmac;
540
-
541
- xmac = priv->plat->has_gmac4 || priv->plat->has_xgmac;
542526
543527 if (!(priv->dma_cap.time_stamp || priv->adv_ts)) {
544528 netdev_alert(priv->dev, "No support for HW time stamping\n");
....@@ -644,7 +628,8 @@
644628 config.rx_filter = HWTSTAMP_FILTER_PTP_V2_EVENT;
645629 ptp_v2 = PTP_TCR_TSVER2ENA;
646630 snap_type_sel = PTP_TCR_SNAPTYPSEL_1;
647
- ts_event_en = PTP_TCR_TSEVNTENA;
631
+ if (priv->synopsys_id < DWMAC_CORE_4_10)
632
+ ts_event_en = PTP_TCR_TSEVNTENA;
648633 ptp_over_ipv4_udp = PTP_TCR_TSIPV4ENA;
649634 ptp_over_ipv6_udp = PTP_TCR_TSIPV6ENA;
650635 ptp_over_ethernet = PTP_TCR_TSIPENA;
....@@ -699,41 +684,16 @@
699684 priv->hwts_rx_en = ((config.rx_filter == HWTSTAMP_FILTER_NONE) ? 0 : 1);
700685 priv->hwts_tx_en = config.tx_type == HWTSTAMP_TX_ON;
701686
702
- if (!priv->hwts_tx_en && !priv->hwts_rx_en)
703
- stmmac_config_hw_tstamping(priv, priv->ptpaddr, 0);
704
- else {
705
- value = (PTP_TCR_TSENA | PTP_TCR_TSCFUPDT | PTP_TCR_TSCTRLSSR |
706
- tstamp_all | ptp_v2 | ptp_over_ethernet |
707
- ptp_over_ipv6_udp | ptp_over_ipv4_udp | ts_event_en |
708
- ts_master_en | snap_type_sel);
709
- stmmac_config_hw_tstamping(priv, priv->ptpaddr, value);
687
+ priv->systime_flags = STMMAC_HWTS_ACTIVE;
710688
711
- /* program Sub Second Increment reg */
712
- stmmac_config_sub_second_increment(priv,
713
- priv->ptpaddr, priv->plat->clk_ptp_rate,
714
- xmac, &sec_inc);
715
- temp = div_u64(1000000000ULL, sec_inc);
716
-
717
- /* Store sub second increment and flags for later use */
718
- priv->sub_second_inc = sec_inc;
719
- priv->systime_flags = value;
720
-
721
- /* calculate default added value:
722
- * formula is :
723
- * addend = (2^32)/freq_div_ratio;
724
- * where, freq_div_ratio = 1e9ns/sec_inc
725
- */
726
- temp = (u64)(temp << 32);
727
- priv->default_addend = div_u64(temp, priv->plat->clk_ptp_rate);
728
- stmmac_config_addend(priv, priv->ptpaddr, priv->default_addend);
729
-
730
- /* initialize system time */
731
- ktime_get_real_ts64(&now);
732
-
733
- /* lower 32 bits of tv_sec are safe until y2106 */
734
- stmmac_init_systime(priv, priv->ptpaddr,
735
- (u32)now.tv_sec, now.tv_nsec);
689
+ if (priv->hwts_tx_en || priv->hwts_rx_en) {
690
+ priv->systime_flags |= tstamp_all | ptp_v2 |
691
+ ptp_over_ethernet | ptp_over_ipv6_udp |
692
+ ptp_over_ipv4_udp | ts_event_en |
693
+ ts_master_en | snap_type_sel;
736694 }
695
+
696
+ stmmac_config_hw_tstamping(priv, priv->ptpaddr, priv->systime_flags);
737697
738698 memcpy(&priv->tstamp_config, &config, sizeof(config));
739699
....@@ -748,7 +708,7 @@
748708 * a proprietary structure used to pass information to the driver.
749709 * Description:
750710 * This function obtain the current hardware timestamping settings
751
- as requested.
711
+ * as requested.
752712 */
753713 static int stmmac_hwtstamp_get(struct net_device *dev, struct ifreq *ifr)
754714 {
....@@ -761,7 +721,57 @@
761721 return copy_to_user(ifr->ifr_data, config,
762722 sizeof(*config)) ? -EFAULT : 0;
763723 }
764
-#endif /* CONFIG_STMMAC_PTP */
724
+
725
+/**
726
+ * stmmac_init_tstamp_counter - init hardware timestamping counter
727
+ * @priv: driver private structure
728
+ * @systime_flags: timestamping flags
729
+ * Description:
730
+ * Initialize hardware counter for packet timestamping.
731
+ * This is valid as long as the interface is open and not suspended.
732
+ * Will be rerun after resuming from suspend, case in which the timestamping
733
+ * flags updated by stmmac_hwtstamp_set() also need to be restored.
734
+ */
735
+int stmmac_init_tstamp_counter(struct stmmac_priv *priv, u32 systime_flags)
736
+{
737
+ bool xmac = priv->plat->has_gmac4 || priv->plat->has_xgmac;
738
+ struct timespec64 now;
739
+ u32 sec_inc = 0;
740
+ u64 temp = 0;
741
+
742
+ if (!(priv->dma_cap.time_stamp || priv->dma_cap.atime_stamp))
743
+ return -EOPNOTSUPP;
744
+
745
+ stmmac_config_hw_tstamping(priv, priv->ptpaddr, systime_flags);
746
+ priv->systime_flags = systime_flags;
747
+
748
+ /* program Sub Second Increment reg */
749
+ stmmac_config_sub_second_increment(priv, priv->ptpaddr,
750
+ priv->plat->clk_ptp_rate,
751
+ xmac, &sec_inc);
752
+ temp = div_u64(1000000000ULL, sec_inc);
753
+
754
+ /* Store sub second increment for later use */
755
+ priv->sub_second_inc = sec_inc;
756
+
757
+ /* calculate default added value:
758
+ * formula is :
759
+ * addend = (2^32)/freq_div_ratio;
760
+ * where, freq_div_ratio = 1e9ns/sec_inc
761
+ */
762
+ temp = (u64)(temp << 32);
763
+ priv->default_addend = div_u64(temp, priv->plat->clk_ptp_rate);
764
+ stmmac_config_addend(priv, priv->ptpaddr, priv->default_addend);
765
+
766
+ /* initialize system time */
767
+ ktime_get_real_ts64(&now);
768
+
769
+ /* lower 32 bits of tv_sec are safe until y2106 */
770
+ stmmac_init_systime(priv, priv->ptpaddr, (u32)now.tv_sec, now.tv_nsec);
771
+
772
+ return 0;
773
+}
774
+EXPORT_SYMBOL_GPL(stmmac_init_tstamp_counter);
765775
766776 /**
767777 * stmmac_init_ptp - init PTP
....@@ -773,9 +783,11 @@
773783 static int stmmac_init_ptp(struct stmmac_priv *priv)
774784 {
775785 bool xmac = priv->plat->has_gmac4 || priv->plat->has_xgmac;
786
+ int ret;
776787
777
- if (!(priv->dma_cap.time_stamp || priv->dma_cap.atime_stamp))
778
- return -EOPNOTSUPP;
788
+ ret = stmmac_init_tstamp_counter(priv, STMMAC_HWTS_ACTIVE);
789
+ if (ret)
790
+ return ret;
779791
780792 priv->adv_ts = 0;
781793 /* Check if adv_ts can be enabled for dwmac 4.x / xgmac core */
....@@ -795,121 +807,274 @@
795807 priv->hwts_tx_en = 0;
796808 priv->hwts_rx_en = 0;
797809
798
- stmmac_ptp_register(priv);
799
-
800810 return 0;
801811 }
802812
803813 static void stmmac_release_ptp(struct stmmac_priv *priv)
804814 {
805
- if (priv->plat->clk_ptp_ref && IS_ENABLED(CONFIG_STMMAC_PTP))
806
- clk_disable_unprepare(priv->plat->clk_ptp_ref);
815
+ clk_disable_unprepare(priv->plat->clk_ptp_ref);
807816 stmmac_ptp_unregister(priv);
808817 }
809818
810819 /**
811820 * stmmac_mac_flow_ctrl - Configure flow control in all queues
812821 * @priv: driver private structure
822
+ * @duplex: duplex passed to the next function
813823 * Description: It is used for configuring the flow control in all queues
814824 */
815825 static void stmmac_mac_flow_ctrl(struct stmmac_priv *priv, u32 duplex)
816826 {
817827 u32 tx_cnt = priv->plat->tx_queues_to_use;
818828
819
- stmmac_flow_ctrl(priv, priv->hw, duplex, priv->flow_ctrl,
820
- priv->pause, tx_cnt);
829
+ stmmac_flow_ctrl(priv, priv->hw, duplex, priv->flow_ctrl & priv->plat->flow_ctrl,
830
+ priv->pause, tx_cnt);
821831 }
822832
823
-/**
824
- * stmmac_adjust_link - adjusts the link parameters
825
- * @dev: net device structure
826
- * Description: this is the helper called by the physical abstraction layer
827
- * drivers to communicate the phy link status. According the speed and duplex
828
- * this driver can invoke registered glue-logic as well.
829
- * It also invoke the eee initialization because it could happen when switch
830
- * on different networks (that are eee capable).
831
- */
832
-static void stmmac_adjust_link(struct net_device *dev)
833
+static void stmmac_validate(struct phylink_config *config,
834
+ unsigned long *supported,
835
+ struct phylink_link_state *state)
833836 {
834
- struct stmmac_priv *priv = netdev_priv(dev);
835
- struct phy_device *phydev = dev->phydev;
836
- bool new_state = false;
837
+ struct stmmac_priv *priv = netdev_priv(to_net_dev(config->dev));
838
+ __ETHTOOL_DECLARE_LINK_MODE_MASK(mac_supported) = { 0, };
839
+ __ETHTOOL_DECLARE_LINK_MODE_MASK(mask) = { 0, };
840
+ int tx_cnt = priv->plat->tx_queues_to_use;
841
+ int max_speed = priv->plat->max_speed;
837842
838
- if (!phydev)
839
- return;
843
+ phylink_set(mac_supported, 10baseT_Half);
844
+ phylink_set(mac_supported, 10baseT_Full);
845
+ phylink_set(mac_supported, 100baseT_Half);
846
+ phylink_set(mac_supported, 100baseT_Full);
847
+ phylink_set(mac_supported, 1000baseT_Half);
848
+ phylink_set(mac_supported, 1000baseT_Full);
849
+ phylink_set(mac_supported, 1000baseKX_Full);
850
+ phylink_set(mac_supported, 100baseT1_Full);
851
+ phylink_set(mac_supported, 1000baseT1_Full);
840852
841
- mutex_lock(&priv->lock);
853
+ phylink_set(mac_supported, Autoneg);
854
+ phylink_set(mac_supported, Pause);
855
+ phylink_set(mac_supported, Asym_Pause);
856
+ phylink_set_port_modes(mac_supported);
842857
843
- if (phydev->link) {
844
- u32 ctrl = readl(priv->ioaddr + MAC_CTRL_REG);
845
-
846
- /* Now we make sure that we can be in full duplex mode.
847
- * If not, we operate in half-duplex mode. */
848
- if (phydev->duplex != priv->oldduplex) {
849
- new_state = true;
850
- if (!phydev->duplex)
851
- ctrl &= ~priv->hw->link.duplex;
852
- else
853
- ctrl |= priv->hw->link.duplex;
854
- priv->oldduplex = phydev->duplex;
858
+ /* Cut down 1G if asked to */
859
+ if ((max_speed > 0) && (max_speed < 1000)) {
860
+ phylink_set(mask, 1000baseT_Full);
861
+ phylink_set(mask, 1000baseX_Full);
862
+ } else if (priv->plat->has_xgmac) {
863
+ if (!max_speed || (max_speed >= 2500)) {
864
+ phylink_set(mac_supported, 2500baseT_Full);
865
+ phylink_set(mac_supported, 2500baseX_Full);
855866 }
856
- /* Flow Control operation */
857
- if (phydev->pause)
858
- stmmac_mac_flow_ctrl(priv, phydev->duplex);
859
-
860
- if (phydev->speed != priv->speed) {
861
- new_state = true;
862
- ctrl &= ~priv->hw->link.speed_mask;
863
- switch (phydev->speed) {
864
- case SPEED_1000:
865
- ctrl |= priv->hw->link.speed1000;
866
- break;
867
- case SPEED_100:
868
- ctrl |= priv->hw->link.speed100;
869
- break;
870
- case SPEED_10:
871
- ctrl |= priv->hw->link.speed10;
872
- break;
873
- default:
874
- netif_warn(priv, link, priv->dev,
875
- "broken speed: %d\n", phydev->speed);
876
- phydev->speed = SPEED_UNKNOWN;
877
- break;
878
- }
879
- if (phydev->speed != SPEED_UNKNOWN)
880
- stmmac_hw_fix_mac_speed(priv);
881
- priv->speed = phydev->speed;
867
+ if (!max_speed || (max_speed >= 5000)) {
868
+ phylink_set(mac_supported, 5000baseT_Full);
882869 }
883
-
884
- writel(ctrl, priv->ioaddr + MAC_CTRL_REG);
885
-
886
- if (!priv->oldlink) {
887
- new_state = true;
888
- priv->oldlink = true;
870
+ if (!max_speed || (max_speed >= 10000)) {
871
+ phylink_set(mac_supported, 10000baseSR_Full);
872
+ phylink_set(mac_supported, 10000baseLR_Full);
873
+ phylink_set(mac_supported, 10000baseER_Full);
874
+ phylink_set(mac_supported, 10000baseLRM_Full);
875
+ phylink_set(mac_supported, 10000baseT_Full);
876
+ phylink_set(mac_supported, 10000baseKX4_Full);
877
+ phylink_set(mac_supported, 10000baseKR_Full);
889878 }
890
- } else if (priv->oldlink) {
891
- new_state = true;
892
- priv->oldlink = false;
893
- priv->speed = SPEED_UNKNOWN;
894
- priv->oldduplex = DUPLEX_UNKNOWN;
879
+ if (!max_speed || (max_speed >= 25000)) {
880
+ phylink_set(mac_supported, 25000baseCR_Full);
881
+ phylink_set(mac_supported, 25000baseKR_Full);
882
+ phylink_set(mac_supported, 25000baseSR_Full);
883
+ }
884
+ if (!max_speed || (max_speed >= 40000)) {
885
+ phylink_set(mac_supported, 40000baseKR4_Full);
886
+ phylink_set(mac_supported, 40000baseCR4_Full);
887
+ phylink_set(mac_supported, 40000baseSR4_Full);
888
+ phylink_set(mac_supported, 40000baseLR4_Full);
889
+ }
890
+ if (!max_speed || (max_speed >= 50000)) {
891
+ phylink_set(mac_supported, 50000baseCR2_Full);
892
+ phylink_set(mac_supported, 50000baseKR2_Full);
893
+ phylink_set(mac_supported, 50000baseSR2_Full);
894
+ phylink_set(mac_supported, 50000baseKR_Full);
895
+ phylink_set(mac_supported, 50000baseSR_Full);
896
+ phylink_set(mac_supported, 50000baseCR_Full);
897
+ phylink_set(mac_supported, 50000baseLR_ER_FR_Full);
898
+ phylink_set(mac_supported, 50000baseDR_Full);
899
+ }
900
+ if (!max_speed || (max_speed >= 100000)) {
901
+ phylink_set(mac_supported, 100000baseKR4_Full);
902
+ phylink_set(mac_supported, 100000baseSR4_Full);
903
+ phylink_set(mac_supported, 100000baseCR4_Full);
904
+ phylink_set(mac_supported, 100000baseLR4_ER4_Full);
905
+ phylink_set(mac_supported, 100000baseKR2_Full);
906
+ phylink_set(mac_supported, 100000baseSR2_Full);
907
+ phylink_set(mac_supported, 100000baseCR2_Full);
908
+ phylink_set(mac_supported, 100000baseLR2_ER2_FR2_Full);
909
+ phylink_set(mac_supported, 100000baseDR2_Full);
910
+ }
895911 }
896912
897
- if (new_state && netif_msg_link(priv))
898
- phy_print_status(phydev);
913
+ /* Half-Duplex can only work with single queue */
914
+ if (tx_cnt > 1) {
915
+ phylink_set(mask, 10baseT_Half);
916
+ phylink_set(mask, 100baseT_Half);
917
+ phylink_set(mask, 1000baseT_Half);
918
+ }
899919
900
- mutex_unlock(&priv->lock);
920
+ linkmode_and(supported, supported, mac_supported);
921
+ linkmode_andnot(supported, supported, mask);
901922
902
- if (phydev->is_pseudo_fixed_link)
903
- /* Stop PHY layer to call the hook to adjust the link in case
904
- * of a switch is attached to the stmmac driver.
905
- */
906
- phydev->irq = PHY_IGNORE_INTERRUPT;
907
- else
908
- /* At this stage, init the EEE if supported.
909
- * Never called in case of fixed_link.
910
- */
911
- priv->eee_enabled = stmmac_eee_init(priv);
923
+ linkmode_and(state->advertising, state->advertising, mac_supported);
924
+ linkmode_andnot(state->advertising, state->advertising, mask);
925
+
926
+ /* If PCS is supported, check which modes it supports. */
927
+ stmmac_xpcs_validate(priv, &priv->hw->xpcs_args, supported, state);
912928 }
929
+
930
+static void stmmac_mac_pcs_get_state(struct phylink_config *config,
931
+ struct phylink_link_state *state)
932
+{
933
+ struct stmmac_priv *priv = netdev_priv(to_net_dev(config->dev));
934
+
935
+ state->link = 0;
936
+ stmmac_xpcs_get_state(priv, &priv->hw->xpcs_args, state);
937
+}
938
+
939
+static void stmmac_mac_config(struct phylink_config *config, unsigned int mode,
940
+ const struct phylink_link_state *state)
941
+{
942
+ struct stmmac_priv *priv = netdev_priv(to_net_dev(config->dev));
943
+
944
+ stmmac_xpcs_config(priv, &priv->hw->xpcs_args, state);
945
+}
946
+
947
+static void stmmac_mac_an_restart(struct phylink_config *config)
948
+{
949
+ /* Not Supported */
950
+}
951
+
952
+static void stmmac_mac_link_down(struct phylink_config *config,
953
+ unsigned int mode, phy_interface_t interface)
954
+{
955
+ struct stmmac_priv *priv = netdev_priv(to_net_dev(config->dev));
956
+
957
+ stmmac_mac_set(priv, priv->ioaddr, false);
958
+ priv->eee_active = false;
959
+ priv->tx_lpi_enabled = false;
960
+ stmmac_eee_init(priv);
961
+ stmmac_set_eee_pls(priv, priv->hw, false);
962
+}
963
+
964
+static void stmmac_mac_link_up(struct phylink_config *config,
965
+ struct phy_device *phy,
966
+ unsigned int mode, phy_interface_t interface,
967
+ int speed, int duplex,
968
+ bool tx_pause, bool rx_pause)
969
+{
970
+ struct stmmac_priv *priv = netdev_priv(to_net_dev(config->dev));
971
+ u32 ctrl;
972
+
973
+ stmmac_xpcs_link_up(priv, &priv->hw->xpcs_args, speed, interface);
974
+
975
+ ctrl = readl(priv->ioaddr + MAC_CTRL_REG);
976
+ ctrl &= ~priv->hw->link.speed_mask;
977
+
978
+ if (interface == PHY_INTERFACE_MODE_USXGMII) {
979
+ switch (speed) {
980
+ case SPEED_10000:
981
+ ctrl |= priv->hw->link.xgmii.speed10000;
982
+ break;
983
+ case SPEED_5000:
984
+ ctrl |= priv->hw->link.xgmii.speed5000;
985
+ break;
986
+ case SPEED_2500:
987
+ ctrl |= priv->hw->link.xgmii.speed2500;
988
+ break;
989
+ default:
990
+ return;
991
+ }
992
+ } else if (interface == PHY_INTERFACE_MODE_XLGMII) {
993
+ switch (speed) {
994
+ case SPEED_100000:
995
+ ctrl |= priv->hw->link.xlgmii.speed100000;
996
+ break;
997
+ case SPEED_50000:
998
+ ctrl |= priv->hw->link.xlgmii.speed50000;
999
+ break;
1000
+ case SPEED_40000:
1001
+ ctrl |= priv->hw->link.xlgmii.speed40000;
1002
+ break;
1003
+ case SPEED_25000:
1004
+ ctrl |= priv->hw->link.xlgmii.speed25000;
1005
+ break;
1006
+ case SPEED_10000:
1007
+ ctrl |= priv->hw->link.xgmii.speed10000;
1008
+ break;
1009
+ case SPEED_2500:
1010
+ ctrl |= priv->hw->link.speed2500;
1011
+ break;
1012
+ case SPEED_1000:
1013
+ ctrl |= priv->hw->link.speed1000;
1014
+ break;
1015
+ default:
1016
+ return;
1017
+ }
1018
+ } else {
1019
+ switch (speed) {
1020
+ case SPEED_2500:
1021
+ ctrl |= priv->hw->link.speed2500;
1022
+ break;
1023
+ case SPEED_1000:
1024
+ ctrl |= priv->hw->link.speed1000;
1025
+ break;
1026
+ case SPEED_100:
1027
+ ctrl |= priv->hw->link.speed100;
1028
+ break;
1029
+ case SPEED_10:
1030
+ ctrl |= priv->hw->link.speed10;
1031
+ break;
1032
+ default:
1033
+ return;
1034
+ }
1035
+ }
1036
+
1037
+ priv->speed = speed;
1038
+
1039
+ if (priv->plat->fix_mac_speed)
1040
+ priv->plat->fix_mac_speed(priv->plat->bsp_priv, speed);
1041
+
1042
+ if (!duplex)
1043
+ ctrl &= ~priv->hw->link.duplex;
1044
+ else
1045
+ ctrl |= priv->hw->link.duplex;
1046
+
1047
+ /* Flow Control operation */
1048
+ if (rx_pause && tx_pause)
1049
+ priv->flow_ctrl = FLOW_AUTO;
1050
+ else if (rx_pause && !tx_pause)
1051
+ priv->flow_ctrl = FLOW_RX;
1052
+ else if (!rx_pause && tx_pause)
1053
+ priv->flow_ctrl = FLOW_TX;
1054
+ else
1055
+ priv->flow_ctrl = FLOW_OFF;
1056
+
1057
+ stmmac_mac_flow_ctrl(priv, duplex);
1058
+
1059
+ writel(ctrl, priv->ioaddr + MAC_CTRL_REG);
1060
+
1061
+ stmmac_mac_set(priv, priv->ioaddr, true);
1062
+ if (phy && priv->dma_cap.eee) {
1063
+ priv->eee_active = phy_init_eee(phy, 1) >= 0;
1064
+ priv->eee_enabled = stmmac_eee_init(priv);
1065
+ priv->tx_lpi_enabled = priv->eee_enabled;
1066
+ stmmac_set_eee_pls(priv, priv->hw, true);
1067
+ }
1068
+}
1069
+
1070
+static const struct phylink_mac_ops stmmac_phylink_mac_ops = {
1071
+ .validate = stmmac_validate,
1072
+ .mac_pcs_get_state = stmmac_mac_pcs_get_state,
1073
+ .mac_config = stmmac_mac_config,
1074
+ .mac_an_restart = stmmac_mac_an_restart,
1075
+ .mac_link_down = stmmac_mac_link_down,
1076
+ .mac_link_up = stmmac_mac_link_up,
1077
+};
9131078
9141079 /**
9151080 * stmmac_check_pcs_mode - verify if RGMII/SGMII is supported
....@@ -936,6 +1101,62 @@
9361101 }
9371102 }
9381103
1104
+#if 0
1105
+static void rtl8211F_led_control(struct phy_device *phydev)
1106
+{
1107
+ printk("ben debug:rtl8211F_led_control...1 \n");
1108
+
1109
+ if(!phydev) return;
1110
+ if(phydev->phy_id!=0x001cc916) return; /* only for 8211E*/
1111
+
1112
+ /*switch to extension page44*/
1113
+ phy_write(phydev, 31, 0x0d04);
1114
+//add hc 1000M --> orange
1115
+// 100M --> green
1116
+ phy_write(phydev, 16, 0x6D02);
1117
+//add hc 1000M&100M --> green
1118
+// phy_write(phydev, 16, 0x6C0A);
1119
+ printk("ben debug:rtl8211F_led_control...2 \n");
1120
+}
1121
+#endif
1122
+#define RTL_8211F_PHY_ID 0x001cc916
1123
+#define RTL_8211F_PHY_ID_MASK 0x001fffff
1124
+#define RTL_8211F_PAGE_SELECT 0x1f
1125
+#define RTL_8211F_LCR_ADDR 0x10
1126
+
1127
+#define GREEN_LED 0 // Â̵ÆÊÇLED0
1128
+#define YELLOW0_LED 1 // »ÆµÆÊÇLED1
1129
+#define YELLOW1_LED 2 // »ÆµÆÊÇLED2
1130
+
1131
+static int rtl8211F_led_control(struct phy_device *phydev)
1132
+{
1133
+ unsigned int temp;
1134
+
1135
+ printk("<<<<<<ben test led ctrl start... %s\n",__FUNCTION__);
1136
+ if(!phydev) return 0;
1137
+ if(phydev->phy_id!=0x001cc916) return 0; /* only for 8211E*/
1138
+
1139
+ // ÅäÖÃÍø¿ÚLEDµÆ
1140
+ phy_write(phydev, 31, 0xd04);
1141
+ temp = 0x02 << (5 * GREEN_LED); // Â̵ƱíʾÁ¬½Ó״̬
1142
+ temp |= 0x08 << (5 * YELLOW0_LED); // »ÆµÆ±íʾÁ¬½Ó״̬
1143
+
1144
+ temp |= 0x1b << (5 * YELLOW1_LED); // »ÆµÆ±íʾÊý¾Ý°üÊÕ·¢×´Ì¬
1145
+ phy_write(phydev, 0x10, temp);
1146
+
1147
+ temp = 1 << (YELLOW1_LED + 1); // Â̵Ʋ»Ö¸Ê¾EEE½ÚÄÜ״̬, ²åÁËÍøÏߺóµÆÒª³£ÁÁ
1148
+ // µ«»ÆµÆÒªÖ¸Ê¾EEE½ÚÄÜ״̬, ûÓÐÊý¾Ý°üʱµÆÒªÏ¨Ãð
1149
+ phy_write(phydev, 0x11, 0x00);
1150
+ phy_write(phydev, 31, 0);
1151
+
1152
+ // ²åÉÏÍøÏߺó, Â̵Ƴ£ÁÁ; °ÎµôÍøÏߺó, Â̵ÆÏ¨Ãð
1153
+ // Á´Â·Ö§³ÖEEE½ÚÄÜ: ÓÐÊý¾Ý´«Êä, »ÆµÆÉÁ˸, ·ñÔòϨÃð
1154
+ // Á´Â·²»Ö§³ÖEEE½ÚÄÜ: ÓÐÊý¾Ý´«Êä, »ÆµÆÉÁ˸, ·ñÔò³£ÁÁ
1155
+
1156
+ printk("<<<<<<<ben test led ctrl end %s\n",__FUNCTION__);
1157
+ return 0;
1158
+}
1159
+
9391160 /**
9401161 * stmmac_init_phy - PHY initialization
9411162 * @dev: net device structure
....@@ -947,85 +1168,83 @@
9471168 static int stmmac_init_phy(struct net_device *dev)
9481169 {
9491170 struct stmmac_priv *priv = netdev_priv(dev);
950
- u32 tx_cnt = priv->plat->tx_queues_to_use;
951
- struct phy_device *phydev;
952
- char phy_id_fmt[MII_BUS_ID_SIZE + 3];
953
- char bus_id[MII_BUS_ID_SIZE];
954
- int interface = priv->plat->interface;
955
- int max_speed = priv->plat->max_speed;
956
- priv->oldlink = false;
957
- priv->speed = SPEED_UNKNOWN;
958
- priv->oldduplex = DUPLEX_UNKNOWN;
1171
+ struct device_node *node;
1172
+ int ret;
9591173
1174
+
1175
+ printk("ben stmmac_init_phy .. \n");
1176
+ mdelay(2000);
1177
+ printk("ben stmmac_init_phy delay .. \n");
9601178 if (priv->plat->integrated_phy_power)
961
- priv->plat->integrated_phy_power(priv->plat->bsp_priv, true);
1179
+ ret = priv->plat->integrated_phy_power(priv->plat->bsp_priv, true);
9621180
963
- if (priv->plat->phy_node) {
964
- phydev = of_phy_connect(dev, priv->plat->phy_node,
965
- &stmmac_adjust_link, 0, interface);
966
- } else {
967
- snprintf(bus_id, MII_BUS_ID_SIZE, "stmmac-%x",
968
- priv->plat->bus_id);
1181
+ node = priv->plat->phylink_node;
9691182
970
- snprintf(phy_id_fmt, MII_BUS_ID_SIZE + 3, PHY_ID_FMT, bus_id,
971
- priv->plat->phy_addr);
972
- netdev_dbg(priv->dev, "%s: trying to attach to %s\n", __func__,
973
- phy_id_fmt);
1183
+ if (node)
1184
+ {
1185
+ //printk("ben ttt.. \n");
1186
+ ret = phylink_of_phy_connect(priv->phylink, node, 0);
1187
+ //printk("ben ttt:%d \n", ret);
1188
+ }
9741189
975
- phydev = phy_connect(dev, phy_id_fmt, &stmmac_adjust_link,
976
- interface);
977
- }
1190
+ /* Some DT bindings do not set-up the PHY handle. Let's try to
1191
+ * manually parse it
1192
+ */
1193
+ //printk("ben:stmmac_init_phy..1 \n");
1194
+ if (!node || ret) {
1195
+ //if (1) {
1196
+ int addr = priv->plat->phy_addr;
1197
+ struct phy_device *phydev;
9781198
979
- if (IS_ERR_OR_NULL(phydev)) {
980
- netdev_err(priv->dev, "Could not attach to PHY\n");
981
- if (!phydev)
1199
+ //printk("ben:stmmac_init_phy..2 \n");
1200
+ phydev = mdiobus_get_phy(priv->mii, addr);
1201
+ if (!phydev) {
1202
+ netdev_err(priv->dev, "no phy at addr %d\n", addr);
9821203 return -ENODEV;
1204
+ }
9831205
984
- return PTR_ERR(phydev);
1206
+ //rtl8211F_led_control(phydev);
1207
+
1208
+ //printk("ben:stmmac_init_phy..3 \n");
1209
+ ret = phylink_connect_phy(priv->phylink, phydev);
1210
+ //rtl8211F_led_control(phydev);
9851211 }
9861212
987
- /* Stop Advertising 1000BASE Capability if interface is not GMII */
988
- if ((interface == PHY_INTERFACE_MODE_MII) ||
989
- (interface == PHY_INTERFACE_MODE_RMII) ||
990
- (max_speed < 1000 && max_speed > 0))
991
- phydev->advertising &= ~(SUPPORTED_1000baseT_Half |
992
- SUPPORTED_1000baseT_Full);
1213
+ if (!priv->plat->pmt) {
1214
+ struct ethtool_wolinfo wol = { .cmd = ETHTOOL_GWOL };
9931215
994
- /*
995
- * Half-duplex mode not supported with multiqueue
996
- * half-duplex can only works with single queue
997
- */
998
- if (tx_cnt > 1)
999
- phydev->supported &= ~(SUPPORTED_1000baseT_Half |
1000
- SUPPORTED_100baseT_Half |
1001
- SUPPORTED_10baseT_Half);
1002
-
1003
- /*
1004
- * Broken HW is sometimes missing the pull-up resistor on the
1005
- * MDIO line, which results in reads to non-existent devices returning
1006
- * 0 rather than 0xffff. Catch this here and treat 0 as a non-existent
1007
- * device as well.
1008
- * Note: phydev->phy_id is the result of reading the UID PHY registers.
1009
- */
1010
- if (!priv->plat->phy_node && phydev->phy_id == 0) {
1011
- phy_disconnect(phydev);
1012
- return -ENODEV;
1216
+ phylink_ethtool_get_wol(priv->phylink, &wol);
1217
+ device_set_wakeup_capable(priv->device, !!wol.supported);
10131218 }
1219
+ return ret;
1220
+}
10141221
1015
- /* stmmac_adjust_link will change this to PHY_IGNORE_INTERRUPT to avoid
1016
- * subsequent PHY polling, make sure we force a link transition if
1017
- * we have a UP/DOWN/UP transition
1018
- */
1019
- if (phydev->is_pseudo_fixed_link)
1020
- phydev->irq = PHY_POLL;
1222
+static int stmmac_phy_setup(struct stmmac_priv *priv)
1223
+{
1224
+ struct fwnode_handle *fwnode = of_fwnode_handle(priv->plat->phylink_node);
1225
+ int mode = priv->plat->phy_interface;
1226
+ struct phylink *phylink;
10211227
1022
- phy_attached_info(phydev);
1228
+ priv->phylink_config.dev = &priv->dev->dev;
1229
+ priv->phylink_config.type = PHYLINK_NETDEV;
1230
+ priv->phylink_config.pcs_poll = true;
1231
+
1232
+ if (!fwnode)
1233
+ fwnode = dev_fwnode(priv->device);
1234
+
1235
+ phylink = phylink_create(&priv->phylink_config, fwnode,
1236
+ mode, &stmmac_phylink_mac_ops);
1237
+ if (IS_ERR(phylink))
1238
+ return PTR_ERR(phylink);
1239
+
1240
+ priv->phylink = phylink;
10231241 return 0;
10241242 }
10251243
10261244 static void stmmac_display_rx_rings(struct stmmac_priv *priv)
10271245 {
10281246 u32 rx_cnt = priv->plat->rx_queues_to_use;
1247
+ unsigned int desc_size;
10291248 void *head_rx;
10301249 u32 queue;
10311250
....@@ -1035,19 +1254,24 @@
10351254
10361255 pr_info("\tRX Queue %u rings\n", queue);
10371256
1038
- if (priv->extend_desc)
1257
+ if (priv->extend_desc) {
10391258 head_rx = (void *)rx_q->dma_erx;
1040
- else
1259
+ desc_size = sizeof(struct dma_extended_desc);
1260
+ } else {
10411261 head_rx = (void *)rx_q->dma_rx;
1262
+ desc_size = sizeof(struct dma_desc);
1263
+ }
10421264
10431265 /* Display RX ring */
1044
- stmmac_display_ring(priv, head_rx, DMA_RX_SIZE, true);
1266
+ stmmac_display_ring(priv, head_rx, priv->dma_rx_size, true,
1267
+ rx_q->dma_rx_phy, desc_size);
10451268 }
10461269 }
10471270
10481271 static void stmmac_display_tx_rings(struct stmmac_priv *priv)
10491272 {
10501273 u32 tx_cnt = priv->plat->tx_queues_to_use;
1274
+ unsigned int desc_size;
10511275 void *head_tx;
10521276 u32 queue;
10531277
....@@ -1057,12 +1281,19 @@
10571281
10581282 pr_info("\tTX Queue %d rings\n", queue);
10591283
1060
- if (priv->extend_desc)
1284
+ if (priv->extend_desc) {
10611285 head_tx = (void *)tx_q->dma_etx;
1062
- else
1286
+ desc_size = sizeof(struct dma_extended_desc);
1287
+ } else if (tx_q->tbs & STMMAC_TBS_AVAIL) {
1288
+ head_tx = (void *)tx_q->dma_entx;
1289
+ desc_size = sizeof(struct dma_edesc);
1290
+ } else {
10631291 head_tx = (void *)tx_q->dma_tx;
1292
+ desc_size = sizeof(struct dma_desc);
1293
+ }
10641294
1065
- stmmac_display_ring(priv, head_tx, DMA_TX_SIZE, false);
1295
+ stmmac_display_ring(priv, head_tx, priv->dma_tx_size, false,
1296
+ tx_q->dma_tx_phy, desc_size);
10661297 }
10671298 }
10681299
....@@ -1106,16 +1337,16 @@
11061337 int i;
11071338
11081339 /* Clear the RX descriptors */
1109
- for (i = 0; i < DMA_RX_SIZE; i++)
1340
+ for (i = 0; i < priv->dma_rx_size; i++)
11101341 if (priv->extend_desc)
11111342 stmmac_init_rx_desc(priv, &rx_q->dma_erx[i].basic,
11121343 priv->use_riwt, priv->mode,
1113
- (i == DMA_RX_SIZE - 1),
1344
+ (i == priv->dma_rx_size - 1),
11141345 priv->dma_buf_sz);
11151346 else
11161347 stmmac_init_rx_desc(priv, &rx_q->dma_rx[i],
11171348 priv->use_riwt, priv->mode,
1118
- (i == DMA_RX_SIZE - 1),
1349
+ (i == priv->dma_rx_size - 1),
11191350 priv->dma_buf_sz);
11201351 }
11211352
....@@ -1132,13 +1363,19 @@
11321363 int i;
11331364
11341365 /* Clear the TX descriptors */
1135
- for (i = 0; i < DMA_TX_SIZE; i++)
1366
+ for (i = 0; i < priv->dma_tx_size; i++) {
1367
+ int last = (i == (priv->dma_tx_size - 1));
1368
+ struct dma_desc *p;
1369
+
11361370 if (priv->extend_desc)
1137
- stmmac_init_tx_desc(priv, &tx_q->dma_etx[i].basic,
1138
- priv->mode, (i == DMA_TX_SIZE - 1));
1371
+ p = &tx_q->dma_etx[i].basic;
1372
+ else if (tx_q->tbs & STMMAC_TBS_AVAIL)
1373
+ p = &tx_q->dma_entx[i].basic;
11391374 else
1140
- stmmac_init_tx_desc(priv, &tx_q->dma_tx[i],
1141
- priv->mode, (i == DMA_TX_SIZE - 1));
1375
+ p = &tx_q->dma_tx[i];
1376
+
1377
+ stmmac_init_tx_desc(priv, p, priv->mode, last);
1378
+ }
11421379 }
11431380
11441381 /**
....@@ -1176,26 +1413,30 @@
11761413 int i, gfp_t flags, u32 queue)
11771414 {
11781415 struct stmmac_rx_queue *rx_q = &priv->rx_queue[queue];
1179
- struct sk_buff *skb;
1416
+ struct stmmac_rx_buffer *buf = &rx_q->buf_pool[i];
1417
+ gfp_t gfp = (GFP_ATOMIC | __GFP_NOWARN);
11801418
1181
- skb = __netdev_alloc_skb_ip_align(priv->dev, priv->dma_buf_sz, flags);
1182
- if (!skb) {
1183
- netdev_err(priv->dev,
1184
- "%s: Rx init fails; skb is NULL\n", __func__);
1419
+ if (priv->dma_cap.addr64 <= 32)
1420
+ gfp |= GFP_DMA32;
1421
+
1422
+ buf->page = page_pool_alloc_pages(rx_q->page_pool, gfp);
1423
+ if (!buf->page)
11851424 return -ENOMEM;
1186
- }
1187
- rx_q->rx_skbuff[i] = skb;
1188
- rx_q->rx_skbuff_dma[i] = dma_map_single(priv->device, skb->data,
1189
- priv->dma_buf_sz,
1190
- DMA_FROM_DEVICE);
1191
- if (dma_mapping_error(priv->device, rx_q->rx_skbuff_dma[i])) {
1192
- netdev_err(priv->dev, "%s: DMA mapping error\n", __func__);
1193
- dev_kfree_skb_any(skb);
1194
- return -EINVAL;
1425
+
1426
+ if (priv->sph) {
1427
+ buf->sec_page = page_pool_alloc_pages(rx_q->page_pool, gfp);
1428
+ if (!buf->sec_page)
1429
+ return -ENOMEM;
1430
+
1431
+ buf->sec_addr = page_pool_get_dma_addr(buf->sec_page);
1432
+ stmmac_set_desc_sec_addr(priv, p, buf->sec_addr, true);
1433
+ } else {
1434
+ buf->sec_page = NULL;
1435
+ stmmac_set_desc_sec_addr(priv, p, buf->sec_addr, false);
11951436 }
11961437
1197
- stmmac_set_desc_addr(priv, p, rx_q->rx_skbuff_dma[i]);
1198
-
1438
+ buf->addr = page_pool_get_dma_addr(buf->page);
1439
+ stmmac_set_desc_addr(priv, p, buf->addr);
11991440 if (priv->dma_buf_sz == BUF_SIZE_16KiB)
12001441 stmmac_init_desc3(priv, p);
12011442
....@@ -1211,13 +1452,15 @@
12111452 static void stmmac_free_rx_buffer(struct stmmac_priv *priv, u32 queue, int i)
12121453 {
12131454 struct stmmac_rx_queue *rx_q = &priv->rx_queue[queue];
1455
+ struct stmmac_rx_buffer *buf = &rx_q->buf_pool[i];
12141456
1215
- if (rx_q->rx_skbuff[i]) {
1216
- dma_unmap_single(priv->device, rx_q->rx_skbuff_dma[i],
1217
- priv->dma_buf_sz, DMA_FROM_DEVICE);
1218
- dev_kfree_skb_any(rx_q->rx_skbuff[i]);
1219
- }
1220
- rx_q->rx_skbuff[i] = NULL;
1457
+ if (buf->page)
1458
+ page_pool_put_full_page(rx_q->page_pool, buf->page, false);
1459
+ buf->page = NULL;
1460
+
1461
+ if (buf->sec_page)
1462
+ page_pool_put_full_page(rx_q->page_pool, buf->sec_page, false);
1463
+ buf->sec_page = NULL;
12211464 }
12221465
12231466 /**
....@@ -1264,18 +1507,8 @@
12641507 struct stmmac_priv *priv = netdev_priv(dev);
12651508 u32 rx_count = priv->plat->rx_queues_to_use;
12661509 int ret = -ENOMEM;
1267
- int bfsize = 0;
12681510 int queue;
12691511 int i;
1270
-
1271
- bfsize = stmmac_set_16kib_bfsize(priv, dev->mtu);
1272
- if (bfsize < 0)
1273
- bfsize = 0;
1274
-
1275
- if (bfsize < BUF_SIZE_16KiB)
1276
- bfsize = stmmac_set_bfsize(dev->mtu, priv->dma_buf_sz);
1277
-
1278
- priv->dma_buf_sz = bfsize;
12791512
12801513 /* RX INITIALIZATION */
12811514 netif_dbg(priv, probe, priv->dev,
....@@ -1288,7 +1521,9 @@
12881521 "(%s) dma_rx_phy=0x%08x\n", __func__,
12891522 (u32)rx_q->dma_rx_phy);
12901523
1291
- for (i = 0; i < DMA_RX_SIZE; i++) {
1524
+ stmmac_clear_rx_descriptors(priv, queue);
1525
+
1526
+ for (i = 0; i < priv->dma_rx_size; i++) {
12921527 struct dma_desc *p;
12931528
12941529 if (priv->extend_desc)
....@@ -1300,29 +1535,23 @@
13001535 queue);
13011536 if (ret)
13021537 goto err_init_rx_buffers;
1303
-
1304
- netif_dbg(priv, probe, priv->dev, "[%p]\t[%p]\t[%x]\n",
1305
- rx_q->rx_skbuff[i], rx_q->rx_skbuff[i]->data,
1306
- (unsigned int)rx_q->rx_skbuff_dma[i]);
13071538 }
13081539
13091540 rx_q->cur_rx = 0;
1310
- rx_q->dirty_rx = (unsigned int)(i - DMA_RX_SIZE);
1311
-
1312
- stmmac_clear_rx_descriptors(priv, queue);
1541
+ rx_q->dirty_rx = (unsigned int)(i - priv->dma_rx_size);
13131542
13141543 /* Setup the chained descriptor addresses */
13151544 if (priv->mode == STMMAC_CHAIN_MODE) {
13161545 if (priv->extend_desc)
13171546 stmmac_mode_init(priv, rx_q->dma_erx,
1318
- rx_q->dma_rx_phy, DMA_RX_SIZE, 1);
1547
+ rx_q->dma_rx_phy,
1548
+ priv->dma_rx_size, 1);
13191549 else
13201550 stmmac_mode_init(priv, rx_q->dma_rx,
1321
- rx_q->dma_rx_phy, DMA_RX_SIZE, 0);
1551
+ rx_q->dma_rx_phy,
1552
+ priv->dma_rx_size, 0);
13221553 }
13231554 }
1324
-
1325
- buf_sz = bfsize;
13261555
13271556 return 0;
13281557
....@@ -1334,7 +1563,7 @@
13341563 if (queue == 0)
13351564 break;
13361565
1337
- i = DMA_RX_SIZE;
1566
+ i = priv->dma_rx_size;
13381567 queue--;
13391568 }
13401569
....@@ -1366,16 +1595,20 @@
13661595 if (priv->mode == STMMAC_CHAIN_MODE) {
13671596 if (priv->extend_desc)
13681597 stmmac_mode_init(priv, tx_q->dma_etx,
1369
- tx_q->dma_tx_phy, DMA_TX_SIZE, 1);
1370
- else
1598
+ tx_q->dma_tx_phy,
1599
+ priv->dma_tx_size, 1);
1600
+ else if (!(tx_q->tbs & STMMAC_TBS_AVAIL))
13711601 stmmac_mode_init(priv, tx_q->dma_tx,
1372
- tx_q->dma_tx_phy, DMA_TX_SIZE, 0);
1602
+ tx_q->dma_tx_phy,
1603
+ priv->dma_tx_size, 0);
13731604 }
13741605
1375
- for (i = 0; i < DMA_TX_SIZE; i++) {
1606
+ for (i = 0; i < priv->dma_tx_size; i++) {
13761607 struct dma_desc *p;
13771608 if (priv->extend_desc)
13781609 p = &((tx_q->dma_etx + i)->basic);
1610
+ else if (tx_q->tbs & STMMAC_TBS_AVAIL)
1611
+ p = &((tx_q->dma_entx + i)->basic);
13791612 else
13801613 p = tx_q->dma_tx + i;
13811614
....@@ -1434,7 +1667,7 @@
14341667 {
14351668 int i;
14361669
1437
- for (i = 0; i < DMA_RX_SIZE; i++)
1670
+ for (i = 0; i < priv->dma_rx_size; i++)
14381671 stmmac_free_rx_buffer(priv, queue, i);
14391672 }
14401673
....@@ -1447,7 +1680,7 @@
14471680 {
14481681 int i;
14491682
1450
- for (i = 0; i < DMA_TX_SIZE; i++)
1683
+ for (i = 0; i < priv->dma_tx_size; i++)
14511684 stmmac_free_tx_buffer(priv, queue, i);
14521685 }
14531686
....@@ -1482,16 +1715,17 @@
14821715
14831716 /* Free DMA regions of consistent memory previously allocated */
14841717 if (!priv->extend_desc)
1485
- dma_free_coherent(priv->device,
1486
- DMA_RX_SIZE * sizeof(struct dma_desc),
1718
+ dma_free_coherent(priv->device, priv->dma_rx_size *
1719
+ sizeof(struct dma_desc),
14871720 rx_q->dma_rx, rx_q->dma_rx_phy);
14881721 else
1489
- dma_free_coherent(priv->device, DMA_RX_SIZE *
1722
+ dma_free_coherent(priv->device, priv->dma_rx_size *
14901723 sizeof(struct dma_extended_desc),
14911724 rx_q->dma_erx, rx_q->dma_rx_phy);
14921725
1493
- kfree(rx_q->rx_skbuff_dma);
1494
- kfree(rx_q->rx_skbuff);
1726
+ kfree(rx_q->buf_pool);
1727
+ if (rx_q->page_pool)
1728
+ page_pool_destroy(rx_q->page_pool);
14951729 }
14961730 }
14971731
....@@ -1507,19 +1741,26 @@
15071741 /* Free TX queue resources */
15081742 for (queue = 0; queue < tx_count; queue++) {
15091743 struct stmmac_tx_queue *tx_q = &priv->tx_queue[queue];
1744
+ size_t size;
1745
+ void *addr;
15101746
15111747 /* Release the DMA TX socket buffers */
15121748 dma_free_tx_skbufs(priv, queue);
15131749
1514
- /* Free DMA regions of consistent memory previously allocated */
1515
- if (!priv->extend_desc)
1516
- dma_free_coherent(priv->device,
1517
- DMA_TX_SIZE * sizeof(struct dma_desc),
1518
- tx_q->dma_tx, tx_q->dma_tx_phy);
1519
- else
1520
- dma_free_coherent(priv->device, DMA_TX_SIZE *
1521
- sizeof(struct dma_extended_desc),
1522
- tx_q->dma_etx, tx_q->dma_tx_phy);
1750
+ if (priv->extend_desc) {
1751
+ size = sizeof(struct dma_extended_desc);
1752
+ addr = tx_q->dma_etx;
1753
+ } else if (tx_q->tbs & STMMAC_TBS_AVAIL) {
1754
+ size = sizeof(struct dma_edesc);
1755
+ addr = tx_q->dma_entx;
1756
+ } else {
1757
+ size = sizeof(struct dma_desc);
1758
+ addr = tx_q->dma_tx;
1759
+ }
1760
+
1761
+ size *= priv->dma_tx_size;
1762
+
1763
+ dma_free_coherent(priv->device, size, addr, tx_q->dma_tx_phy);
15231764
15241765 kfree(tx_q->tx_skbuff_dma);
15251766 kfree(tx_q->tx_skbuff);
....@@ -1543,39 +1784,49 @@
15431784 /* RX queues buffers and DMA */
15441785 for (queue = 0; queue < rx_count; queue++) {
15451786 struct stmmac_rx_queue *rx_q = &priv->rx_queue[queue];
1787
+ struct page_pool_params pp_params = { 0 };
1788
+ unsigned int num_pages;
15461789
15471790 rx_q->queue_index = queue;
15481791 rx_q->priv_data = priv;
15491792
1550
- rx_q->rx_skbuff_dma = kmalloc_array(DMA_RX_SIZE,
1551
- sizeof(dma_addr_t),
1552
- GFP_KERNEL);
1553
- if (!rx_q->rx_skbuff_dma)
1554
- goto err_dma;
1793
+ pp_params.flags = PP_FLAG_DMA_MAP | PP_FLAG_DMA_SYNC_DEV;
1794
+ pp_params.pool_size = priv->dma_rx_size;
1795
+ num_pages = DIV_ROUND_UP(priv->dma_buf_sz, PAGE_SIZE);
1796
+ pp_params.order = ilog2(num_pages);
1797
+ pp_params.nid = dev_to_node(priv->device);
1798
+ pp_params.dev = priv->device;
1799
+ pp_params.dma_dir = DMA_FROM_DEVICE;
1800
+ pp_params.max_len = num_pages * PAGE_SIZE;
15551801
1556
- rx_q->rx_skbuff = kmalloc_array(DMA_RX_SIZE,
1557
- sizeof(struct sk_buff *),
1558
- GFP_KERNEL);
1559
- if (!rx_q->rx_skbuff)
1802
+ rx_q->page_pool = page_pool_create(&pp_params);
1803
+ if (IS_ERR(rx_q->page_pool)) {
1804
+ ret = PTR_ERR(rx_q->page_pool);
1805
+ rx_q->page_pool = NULL;
1806
+ goto err_dma;
1807
+ }
1808
+
1809
+ rx_q->buf_pool = kcalloc(priv->dma_rx_size,
1810
+ sizeof(*rx_q->buf_pool),
1811
+ GFP_KERNEL);
1812
+ if (!rx_q->buf_pool)
15601813 goto err_dma;
15611814
15621815 if (priv->extend_desc) {
1563
- rx_q->dma_erx = dma_zalloc_coherent(priv->device,
1564
- DMA_RX_SIZE *
1565
- sizeof(struct
1566
- dma_extended_desc),
1567
- &rx_q->dma_rx_phy,
1568
- GFP_KERNEL);
1816
+ rx_q->dma_erx = dma_alloc_coherent(priv->device,
1817
+ priv->dma_rx_size *
1818
+ sizeof(struct dma_extended_desc),
1819
+ &rx_q->dma_rx_phy,
1820
+ GFP_KERNEL);
15691821 if (!rx_q->dma_erx)
15701822 goto err_dma;
15711823
15721824 } else {
1573
- rx_q->dma_rx = dma_zalloc_coherent(priv->device,
1574
- DMA_RX_SIZE *
1575
- sizeof(struct
1576
- dma_desc),
1577
- &rx_q->dma_rx_phy,
1578
- GFP_KERNEL);
1825
+ rx_q->dma_rx = dma_alloc_coherent(priv->device,
1826
+ priv->dma_rx_size *
1827
+ sizeof(struct dma_desc),
1828
+ &rx_q->dma_rx_phy,
1829
+ GFP_KERNEL);
15791830 if (!rx_q->dma_rx)
15801831 goto err_dma;
15811832 }
....@@ -1606,48 +1857,50 @@
16061857 /* TX queues buffers and DMA */
16071858 for (queue = 0; queue < tx_count; queue++) {
16081859 struct stmmac_tx_queue *tx_q = &priv->tx_queue[queue];
1860
+ size_t size;
1861
+ void *addr;
16091862
16101863 tx_q->queue_index = queue;
16111864 tx_q->priv_data = priv;
16121865
1613
- tx_q->tx_skbuff_dma = kmalloc_array(DMA_TX_SIZE,
1614
- sizeof(*tx_q->tx_skbuff_dma),
1615
- GFP_KERNEL);
1866
+ tx_q->tx_skbuff_dma = kcalloc(priv->dma_tx_size,
1867
+ sizeof(*tx_q->tx_skbuff_dma),
1868
+ GFP_KERNEL);
16161869 if (!tx_q->tx_skbuff_dma)
16171870 goto err_dma;
16181871
1619
- tx_q->tx_skbuff = kmalloc_array(DMA_TX_SIZE,
1620
- sizeof(struct sk_buff *),
1621
- GFP_KERNEL);
1872
+ tx_q->tx_skbuff = kcalloc(priv->dma_tx_size,
1873
+ sizeof(struct sk_buff *),
1874
+ GFP_KERNEL);
16221875 if (!tx_q->tx_skbuff)
16231876 goto err_dma;
16241877
1625
- if (priv->extend_desc) {
1626
- tx_q->dma_etx = dma_zalloc_coherent(priv->device,
1627
- DMA_TX_SIZE *
1628
- sizeof(struct
1629
- dma_extended_desc),
1630
- &tx_q->dma_tx_phy,
1631
- GFP_KERNEL);
1632
- if (!tx_q->dma_etx)
1633
- goto err_dma;
1634
- } else {
1635
- tx_q->dma_tx = dma_zalloc_coherent(priv->device,
1636
- DMA_TX_SIZE *
1637
- sizeof(struct
1638
- dma_desc),
1639
- &tx_q->dma_tx_phy,
1640
- GFP_KERNEL);
1641
- if (!tx_q->dma_tx)
1642
- goto err_dma;
1643
- }
1878
+ if (priv->extend_desc)
1879
+ size = sizeof(struct dma_extended_desc);
1880
+ else if (tx_q->tbs & STMMAC_TBS_AVAIL)
1881
+ size = sizeof(struct dma_edesc);
1882
+ else
1883
+ size = sizeof(struct dma_desc);
1884
+
1885
+ size *= priv->dma_tx_size;
1886
+
1887
+ addr = dma_alloc_coherent(priv->device, size,
1888
+ &tx_q->dma_tx_phy, GFP_KERNEL);
1889
+ if (!addr)
1890
+ goto err_dma;
1891
+
1892
+ if (priv->extend_desc)
1893
+ tx_q->dma_etx = addr;
1894
+ else if (tx_q->tbs & STMMAC_TBS_AVAIL)
1895
+ tx_q->dma_entx = addr;
1896
+ else
1897
+ tx_q->dma_tx = addr;
16441898 }
16451899
16461900 return 0;
16471901
16481902 err_dma:
16491903 free_dma_tx_desc_resources(priv);
1650
-
16511904 return ret;
16521905 }
16531906
....@@ -1858,6 +2111,7 @@
18582111 /**
18592112 * stmmac_tx_clean - to manage the transmission completion
18602113 * @priv: driver private structure
2114
+ * @budget: napi budget limiting this functions packet handling
18612115 * @queue: TX queue index
18622116 * Description: it reclaims the transmit resources after transmission completes.
18632117 */
....@@ -1879,6 +2133,8 @@
18792133
18802134 if (priv->extend_desc)
18812135 p = (struct dma_desc *)(tx_q->dma_etx + entry);
2136
+ else if (tx_q->tbs & STMMAC_TBS_AVAIL)
2137
+ p = &tx_q->dma_entx[entry].basic;
18822138 else
18832139 p = tx_q->dma_tx + entry;
18842140
....@@ -1937,7 +2193,7 @@
19372193
19382194 stmmac_release_tx_desc(priv, p, priv->mode);
19392195
1940
- entry = STMMAC_GET_ENTRY(entry, DMA_TX_SIZE);
2196
+ entry = STMMAC_GET_ENTRY(entry, priv->dma_tx_size);
19412197 }
19422198 tx_q->dirty_tx = entry;
19432199
....@@ -1946,7 +2202,7 @@
19462202
19472203 if (unlikely(netif_tx_queue_stopped(netdev_get_tx_queue(priv->dev,
19482204 queue))) &&
1949
- stmmac_tx_avail(priv, queue) > STMMAC_TX_THRESH) {
2205
+ stmmac_tx_avail(priv, queue) > STMMAC_TX_THRESH(priv)) {
19502206
19512207 netif_dbg(priv, tx_done, priv->dev,
19522208 "%s: restart transmit\n", __func__);
....@@ -1955,8 +2211,12 @@
19552211
19562212 if ((priv->eee_enabled) && (!priv->tx_path_in_lpi_mode)) {
19572213 stmmac_enable_eee_mode(priv);
1958
- mod_timer(&priv->eee_ctrl_timer, STMMAC_LPI_T(eee_timer));
2214
+ mod_timer(&priv->eee_ctrl_timer, STMMAC_LPI_T(priv->tx_lpi_timer));
19592215 }
2216
+
2217
+ /* We still have pending packets, let's call for a new scheduling */
2218
+ if (tx_q->dirty_tx != tx_q->cur_tx)
2219
+ mod_timer(&tx_q->txtimer, STMMAC_COAL_TIMER(priv->tx_coal_timer));
19602220
19612221 __netif_tx_unlock_bh(netdev_get_tx_queue(priv->dev, queue));
19622222
....@@ -1973,23 +2233,18 @@
19732233 static void stmmac_tx_err(struct stmmac_priv *priv, u32 chan)
19742234 {
19752235 struct stmmac_tx_queue *tx_q = &priv->tx_queue[chan];
1976
- int i;
19772236
19782237 netif_tx_stop_queue(netdev_get_tx_queue(priv->dev, chan));
19792238
19802239 stmmac_stop_tx_dma(priv, chan);
19812240 dma_free_tx_skbufs(priv, chan);
1982
- for (i = 0; i < DMA_TX_SIZE; i++)
1983
- if (priv->extend_desc)
1984
- stmmac_init_tx_desc(priv, &tx_q->dma_etx[i].basic,
1985
- priv->mode, (i == DMA_TX_SIZE - 1));
1986
- else
1987
- stmmac_init_tx_desc(priv, &tx_q->dma_tx[i],
1988
- priv->mode, (i == DMA_TX_SIZE - 1));
2241
+ stmmac_clear_tx_descriptors(priv, chan);
19892242 tx_q->dirty_tx = 0;
19902243 tx_q->cur_tx = 0;
19912244 tx_q->mss = 0;
19922245 netdev_tx_reset_queue(netdev_get_tx_queue(priv->dev, chan));
2246
+ stmmac_init_tx_chan(priv, priv->ioaddr, priv->plat->dma_cfg,
2247
+ tx_q->dma_tx_phy, chan);
19932248 stmmac_start_tx_dma(priv, chan);
19942249
19952250 priv->dev->stats.tx_errors++;
....@@ -2048,23 +2303,24 @@
20482303 int status = stmmac_dma_interrupt_status(priv, priv->ioaddr,
20492304 &priv->xstats, chan);
20502305 struct stmmac_channel *ch = &priv->channel[chan];
2051
- bool needs_work = false;
2306
+ unsigned long flags;
20522307
2053
- if ((status & handle_rx) && ch->has_rx) {
2054
- needs_work = true;
2055
- } else {
2056
- status &= ~handle_rx;
2308
+ if ((status & handle_rx) && (chan < priv->plat->rx_queues_to_use)) {
2309
+ if (napi_schedule_prep(&ch->rx_napi)) {
2310
+ spin_lock_irqsave(&ch->lock, flags);
2311
+ stmmac_disable_dma_irq(priv, priv->ioaddr, chan, 1, 0);
2312
+ spin_unlock_irqrestore(&ch->lock, flags);
2313
+ __napi_schedule(&ch->rx_napi);
2314
+ }
20572315 }
20582316
2059
- if ((status & handle_tx) && ch->has_tx) {
2060
- needs_work = true;
2061
- } else {
2062
- status &= ~handle_tx;
2063
- }
2064
-
2065
- if (needs_work && napi_schedule_prep(&ch->napi)) {
2066
- stmmac_disable_dma_irq(priv, priv->ioaddr, chan);
2067
- __napi_schedule(&ch->napi);
2317
+ if ((status & handle_tx) && (chan < priv->plat->tx_queues_to_use)) {
2318
+ if (napi_schedule_prep(&ch->tx_napi)) {
2319
+ spin_lock_irqsave(&ch->lock, flags);
2320
+ stmmac_disable_dma_irq(priv, priv->ioaddr, chan, 0, 1);
2321
+ spin_unlock_irqrestore(&ch->lock, flags);
2322
+ __napi_schedule(&ch->tx_napi);
2323
+ }
20682324 }
20692325
20702326 return status;
....@@ -2127,10 +2383,10 @@
21272383 unsigned int mode = MMC_CNTRL_RESET_ON_READ | MMC_CNTRL_COUNTER_RESET |
21282384 MMC_CNTRL_PRESET | MMC_CNTRL_FULL_HALF_PRESET;
21292385
2130
- dwmac_mmc_intr_all_mask(priv->mmcaddr);
2386
+ stmmac_mmc_intr_all_mask(priv, priv->mmcaddr);
21312387
21322388 if (priv->dma_cap.rmon) {
2133
- dwmac_mmc_ctrl(priv->mmcaddr, mode);
2389
+ stmmac_mmc_ctrl(priv, priv->mmcaddr, mode);
21342390 memset(&priv->mmc, 0, sizeof(struct stmmac_counters));
21352391 } else
21362392 netdev_info(priv->dev, "No MAC Management Counters available\n");
....@@ -2160,7 +2416,7 @@
21602416 static void stmmac_check_ether_addr(struct stmmac_priv *priv)
21612417 {
21622418 // if (!is_valid_ether_addr(priv->dev->dev_addr)) {
2163
- if(1) {
2419
+ if (1) {
21642420 stmmac_get_umac_addr(priv, priv->hw, priv->dev->dev_addr, 0);
21652421 if (likely(priv->plat->get_eth_addr))
21662422 priv->plat->get_eth_addr(priv->plat->bsp_priv,
....@@ -2223,7 +2479,8 @@
22232479 rx_q->dma_rx_phy, chan);
22242480
22252481 rx_q->rx_tail_addr = rx_q->dma_rx_phy +
2226
- (DMA_RX_SIZE * sizeof(struct dma_desc));
2482
+ (priv->dma_rx_size *
2483
+ sizeof(struct dma_desc));
22272484 stmmac_set_rx_tail_ptr(priv, priv->ioaddr,
22282485 rx_q->rx_tail_addr, chan);
22292486 }
....@@ -2252,7 +2509,7 @@
22522509
22532510 /**
22542511 * stmmac_tx_timer - mitigation sw timer for tx.
2255
- * @data: data pointer
2512
+ * @t: data pointer
22562513 * Description:
22572514 * This is the timer handler to directly invoke the stmmac_tx_clean.
22582515 */
....@@ -2264,25 +2521,32 @@
22642521
22652522 ch = &priv->channel[tx_q->queue_index];
22662523
2267
- if (likely(napi_schedule_prep(&ch->napi)))
2268
- __napi_schedule(&ch->napi);
2524
+ if (likely(napi_schedule_prep(&ch->tx_napi))) {
2525
+ unsigned long flags;
2526
+
2527
+ spin_lock_irqsave(&ch->lock, flags);
2528
+ stmmac_disable_dma_irq(priv, priv->ioaddr, ch->index, 0, 1);
2529
+ spin_unlock_irqrestore(&ch->lock, flags);
2530
+ __napi_schedule(&ch->tx_napi);
2531
+ }
22692532 }
22702533
22712534 /**
2272
- * stmmac_init_tx_coalesce - init tx mitigation options.
2535
+ * stmmac_init_coalesce - init mitigation options.
22732536 * @priv: driver private structure
22742537 * Description:
2275
- * This inits the transmit coalesce parameters: i.e. timer rate,
2538
+ * This inits the coalesce parameters: i.e. timer rate,
22762539 * timer handler and default threshold used for enabling the
22772540 * interrupt on completion bit.
22782541 */
2279
-static void stmmac_init_tx_coalesce(struct stmmac_priv *priv)
2542
+static void stmmac_init_coalesce(struct stmmac_priv *priv)
22802543 {
22812544 u32 tx_channel_count = priv->plat->tx_queues_to_use;
22822545 u32 chan;
22832546
22842547 priv->tx_coal_frames = STMMAC_TX_FRAMES;
22852548 priv->tx_coal_timer = STMMAC_COAL_TX_TIMER;
2549
+ priv->rx_coal_frames = STMMAC_RX_FRAMES;
22862550
22872551 for (chan = 0; chan < tx_channel_count; chan++) {
22882552 struct stmmac_tx_queue *tx_q = &priv->tx_queue[chan];
....@@ -2300,12 +2564,12 @@
23002564 /* set TX ring length */
23012565 for (chan = 0; chan < tx_channels_count; chan++)
23022566 stmmac_set_tx_ring_len(priv, priv->ioaddr,
2303
- (DMA_TX_SIZE - 1), chan);
2567
+ (priv->dma_tx_size - 1), chan);
23042568
23052569 /* set RX ring length */
23062570 for (chan = 0; chan < rx_channels_count; chan++)
23072571 stmmac_set_rx_ring_len(priv, priv->ioaddr,
2308
- (DMA_RX_SIZE - 1), chan);
2572
+ (priv->dma_rx_size - 1), chan);
23092573 }
23102574
23112575 /**
....@@ -2429,6 +2693,22 @@
24292693 }
24302694 }
24312695
2696
+static void stmmac_mac_config_rss(struct stmmac_priv *priv)
2697
+{
2698
+ if (!priv->dma_cap.rssen || !priv->plat->rss_en) {
2699
+ priv->rss.enable = false;
2700
+ return;
2701
+ }
2702
+
2703
+ if (priv->dev->features & NETIF_F_RXHASH)
2704
+ priv->rss.enable = true;
2705
+ else
2706
+ priv->rss.enable = false;
2707
+
2708
+ stmmac_rss_configure(priv, priv->hw, &priv->rss,
2709
+ priv->plat->rx_queues_to_use);
2710
+}
2711
+
24322712 /**
24332713 * stmmac_mtl_configuration - Configure MTL
24342714 * @priv: driver private structure
....@@ -2473,6 +2753,10 @@
24732753 /* Set RX routing */
24742754 if (rx_queues_count > 1)
24752755 stmmac_mac_config_rx_queues_routing(priv);
2756
+
2757
+ /* Receive Side Scaling */
2758
+ if (rx_queues_count > 1)
2759
+ stmmac_mac_config_rss(priv);
24762760 }
24772761
24782762 static void stmmac_safety_feat_configuration(struct stmmac_priv *priv)
....@@ -2488,6 +2772,7 @@
24882772 /**
24892773 * stmmac_hw_setup - setup mac in a usable state.
24902774 * @dev : pointer to the device structure.
2775
+ * @ptp_register: register PTP if set
24912776 * Description:
24922777 * this is the main function to setup the HW in a usable state because the
24932778 * dma engine is reset, the core registers are configured (e.g. AXI,
....@@ -2497,7 +2782,7 @@
24972782 * 0 on success and an appropriate (-)ve integer as defined in errno.h
24982783 * file on failure.
24992784 */
2500
-static int stmmac_hw_setup(struct net_device *dev, bool init_ptp)
2785
+static int stmmac_hw_setup(struct net_device *dev, bool ptp_register)
25012786 {
25022787 struct stmmac_priv *priv = netdev_priv(dev);
25032788 u32 rx_cnt = priv->plat->rx_queues_to_use;
....@@ -2553,37 +2838,75 @@
25532838
25542839 stmmac_mmc_setup(priv);
25552840
2556
- if (IS_ENABLED(CONFIG_STMMAC_PTP) && init_ptp) {
2841
+ if (ptp_register) {
25572842 ret = clk_prepare_enable(priv->plat->clk_ptp_ref);
25582843 if (ret < 0)
2559
- netdev_warn(priv->dev, "failed to enable PTP reference clock: %d\n", ret);
2560
-
2561
- ret = stmmac_init_ptp(priv);
2562
- if (ret == -EOPNOTSUPP)
2563
- netdev_warn(priv->dev, "PTP not supported by HW\n");
2564
- else if (ret)
2565
- netdev_warn(priv->dev, "PTP init failed\n");
2844
+ netdev_warn(priv->dev,
2845
+ "failed to enable PTP reference clock: %pe\n",
2846
+ ERR_PTR(ret));
25662847 }
25672848
2568
- priv->tx_lpi_timer = STMMAC_DEFAULT_TWT_LS;
2849
+ ret = stmmac_init_ptp(priv);
2850
+ if (ret == -EOPNOTSUPP)
2851
+ netdev_warn(priv->dev, "PTP not supported by HW\n");
2852
+ else if (ret)
2853
+ netdev_warn(priv->dev, "PTP init failed\n");
2854
+ else if (ptp_register)
2855
+ stmmac_ptp_register(priv);
2856
+
2857
+ priv->eee_tw_timer = STMMAC_DEFAULT_TWT_LS;
2858
+
2859
+ /* Convert the timer from msec to usec */
2860
+ if (!priv->tx_lpi_timer)
2861
+ priv->tx_lpi_timer = eee_timer * 1000;
25692862
25702863 if (priv->use_riwt) {
2571
- ret = stmmac_rx_watchdog(priv, priv->ioaddr, MAX_DMA_RIWT, rx_cnt);
2572
- if (!ret)
2573
- priv->rx_riwt = MAX_DMA_RIWT;
2864
+ if (!priv->rx_riwt)
2865
+ priv->rx_riwt = DEF_DMA_RIWT;
2866
+
2867
+ ret = stmmac_rx_watchdog(priv, priv->ioaddr, priv->rx_riwt, rx_cnt);
25742868 }
25752869
25762870 if (priv->hw->pcs)
2577
- stmmac_pcs_ctrl_ane(priv, priv->hw, 1, priv->hw->ps, 0);
2871
+ stmmac_pcs_ctrl_ane(priv, priv->ioaddr, 1, priv->hw->ps, 0);
25782872
25792873 /* set TX and RX rings length */
25802874 stmmac_set_rings_length(priv);
25812875
25822876 /* Enable TSO */
25832877 if (priv->tso) {
2584
- for (chan = 0; chan < tx_cnt; chan++)
2878
+ for (chan = 0; chan < tx_cnt; chan++) {
2879
+ struct stmmac_tx_queue *tx_q = &priv->tx_queue[chan];
2880
+
2881
+ /* TSO and TBS cannot co-exist */
2882
+ if (tx_q->tbs & STMMAC_TBS_AVAIL)
2883
+ continue;
2884
+
25852885 stmmac_enable_tso(priv, priv->ioaddr, 1, chan);
2886
+ }
25862887 }
2888
+
2889
+ /* Enable Split Header */
2890
+ if (priv->sph && priv->hw->rx_csum) {
2891
+ for (chan = 0; chan < rx_cnt; chan++)
2892
+ stmmac_enable_sph(priv, priv->ioaddr, 1, chan);
2893
+ }
2894
+
2895
+ /* VLAN Tag Insertion */
2896
+ if (priv->dma_cap.vlins)
2897
+ stmmac_enable_vlan(priv, priv->hw, STMMAC_VLAN_INSERT);
2898
+
2899
+ /* TBS */
2900
+ for (chan = 0; chan < tx_cnt; chan++) {
2901
+ struct stmmac_tx_queue *tx_q = &priv->tx_queue[chan];
2902
+ int enable = tx_q->tbs & STMMAC_TBS_AVAIL;
2903
+
2904
+ stmmac_enable_tbs(priv, priv->ioaddr, enable, chan);
2905
+ }
2906
+
2907
+ /* Configure real RX and TX queues */
2908
+ netif_set_real_num_rx_queues(dev, priv->plat->rx_queues_to_use);
2909
+ netif_set_real_num_tx_queues(dev, priv->plat->tx_queues_to_use);
25872910
25882911 /* Start the ball rolling... */
25892912 stmmac_start_all_dma(priv);
....@@ -2595,8 +2918,7 @@
25952918 {
25962919 struct stmmac_priv *priv = netdev_priv(dev);
25972920
2598
- if (IS_ENABLED(CONFIG_STMMAC_PTP))
2599
- clk_disable_unprepare(priv->plat->clk_ptp_ref);
2921
+ clk_disable_unprepare(priv->plat->clk_ptp_ref);
26002922 }
26012923
26022924 /**
....@@ -2611,18 +2933,26 @@
26112933 static int stmmac_open(struct net_device *dev)
26122934 {
26132935 struct stmmac_priv *priv = netdev_priv(dev);
2936
+ int bfsize = 0;
26142937 u32 chan;
26152938 int ret;
26162939
2617
- if (priv->hw->pcs != STMMAC_PCS_RGMII &&
2618
- priv->hw->pcs != STMMAC_PCS_TBI &&
2619
- priv->hw->pcs != STMMAC_PCS_RTBI) {
2940
+ //printk("ben:stmmac_open.. \n");
2941
+ ret = pm_runtime_get_sync(priv->device);
2942
+ if (ret < 0) {
2943
+ pm_runtime_put_noidle(priv->device);
2944
+ return ret;
2945
+ }
2946
+
2947
+ if (priv->hw->pcs != STMMAC_PCS_TBI &&
2948
+ priv->hw->pcs != STMMAC_PCS_RTBI &&
2949
+ priv->hw->xpcs == NULL) {
26202950 ret = stmmac_init_phy(dev);
26212951 if (ret) {
26222952 netdev_err(priv->dev,
26232953 "%s: Cannot attach to PHY (error: %d)\n",
26242954 __func__, ret);
2625
- return ret;
2955
+ goto init_phy_error;
26262956 }
26272957 }
26282958
....@@ -2630,8 +2960,34 @@
26302960 memset(&priv->xstats, 0, sizeof(struct stmmac_extra_stats));
26312961 priv->xstats.threshold = tc;
26322962
2633
- priv->dma_buf_sz = STMMAC_ALIGN(buf_sz);
2963
+ bfsize = stmmac_set_16kib_bfsize(priv, dev->mtu);
2964
+ if (bfsize < 0)
2965
+ bfsize = 0;
2966
+
2967
+ if (bfsize < BUF_SIZE_16KiB)
2968
+ bfsize = stmmac_set_bfsize(dev->mtu, priv->dma_buf_sz);
2969
+
2970
+ priv->dma_buf_sz = bfsize;
2971
+ buf_sz = bfsize;
2972
+
26342973 priv->rx_copybreak = STMMAC_RX_COPYBREAK;
2974
+
2975
+ if (!priv->dma_tx_size)
2976
+ priv->dma_tx_size = priv->plat->dma_tx_size ? priv->plat->dma_tx_size :
2977
+ DMA_DEFAULT_TX_SIZE;
2978
+
2979
+ if (!priv->dma_rx_size)
2980
+ priv->dma_rx_size = priv->plat->dma_rx_size ? priv->plat->dma_rx_size :
2981
+ DMA_DEFAULT_RX_SIZE;
2982
+
2983
+ /* Earlier check for TBS */
2984
+ for (chan = 0; chan < priv->plat->tx_queues_to_use; chan++) {
2985
+ struct stmmac_tx_queue *tx_q = &priv->tx_queue[chan];
2986
+ int tbs_en = priv->plat->tx_queues_cfg[chan].tbs_en;
2987
+
2988
+ /* Setup per-TXQ tbs flag before TX descriptor alloc */
2989
+ tx_q->tbs |= tbs_en ? STMMAC_TBS_AVAIL : 0;
2990
+ }
26352991
26362992 ret = alloc_dma_desc_resources(priv);
26372993 if (ret < 0) {
....@@ -2647,16 +3003,32 @@
26473003 goto init_error;
26483004 }
26493005
3006
+ if (priv->plat->serdes_powerup) {
3007
+ ret = priv->plat->serdes_powerup(dev, priv->plat->bsp_priv);
3008
+ if (ret < 0) {
3009
+ netdev_err(priv->dev, "%s: Serdes powerup failed\n",
3010
+ __func__);
3011
+ goto init_error;
3012
+ }
3013
+ }
3014
+
3015
+
3016
+ #if 1
3017
+ printk("ben -------bootup add 2s delay time.\n");
3018
+ mdelay(2500);
3019
+ #endif
3020
+
26503021 ret = stmmac_hw_setup(dev, true);
26513022 if (ret < 0) {
26523023 netdev_err(priv->dev, "%s: Hw setup failed\n", __func__);
26533024 goto init_error;
26543025 }
26553026
2656
- stmmac_init_tx_coalesce(priv);
3027
+ stmmac_init_coalesce(priv);
26573028
2658
- if (dev->phydev)
2659
- phy_start(dev->phydev);
3029
+ phylink_start(priv->phylink);
3030
+ /* We may have called phylink_speed_down before */
3031
+ phylink_speed_up(priv->phylink);
26603032
26613033 /* Request the IRQ lines */
26623034 ret = request_irq(dev->irq, stmmac_interrupt,
....@@ -2703,8 +3075,7 @@
27033075 wolirq_error:
27043076 free_irq(dev->irq, dev);
27053077 irq_error:
2706
- if (dev->phydev)
2707
- phy_stop(dev->phydev);
3078
+ phylink_stop(priv->phylink);
27083079
27093080 for (chan = 0; chan < priv->plat->tx_queues_to_use; chan++)
27103081 del_timer_sync(&priv->tx_queue[chan].txtimer);
....@@ -2713,9 +3084,9 @@
27133084 init_error:
27143085 free_dma_desc_resources(priv);
27153086 dma_desc_error:
2716
- if (dev->phydev)
2717
- phy_disconnect(dev->phydev);
2718
-
3087
+ phylink_disconnect_phy(priv->phylink);
3088
+init_phy_error:
3089
+ pm_runtime_put(priv->device);
27193090 return ret;
27203091 }
27213092
....@@ -2730,14 +3101,14 @@
27303101 struct stmmac_priv *priv = netdev_priv(dev);
27313102 u32 chan;
27323103
3104
+ if (device_may_wakeup(priv->device))
3105
+ phylink_speed_down(priv->phylink, false);
27333106 /* Stop and disconnect the PHY */
2734
- if (dev->phydev) {
2735
- phy_stop(dev->phydev);
2736
- phy_disconnect(dev->phydev);
2737
- if (priv->plat->integrated_phy_power)
2738
- priv->plat->integrated_phy_power(priv->plat->bsp_priv,
2739
- false);
2740
- }
3107
+ phylink_stop(priv->phylink);
3108
+ phylink_disconnect_phy(priv->phylink);
3109
+
3110
+ if (priv->plat->integrated_phy_power)
3111
+ priv->plat->integrated_phy_power(priv->plat->bsp_priv, false);
27413112
27423113 stmmac_disable_all_queues(priv);
27433114
....@@ -2765,12 +3136,48 @@
27653136 /* Disable the MAC Rx/Tx */
27663137 stmmac_mac_set(priv, priv->ioaddr, false);
27673138
3139
+ /* Powerdown Serdes if there is */
3140
+ if (priv->plat->serdes_powerdown)
3141
+ priv->plat->serdes_powerdown(dev, priv->plat->bsp_priv);
3142
+
27683143 netif_carrier_off(dev);
27693144
2770
- if (IS_ENABLED(CONFIG_STMMAC_PTP))
2771
- stmmac_release_ptp(priv);
3145
+ stmmac_release_ptp(priv);
3146
+
3147
+ pm_runtime_put(priv->device);
27723148
27733149 return 0;
3150
+}
3151
+
3152
+static bool stmmac_vlan_insert(struct stmmac_priv *priv, struct sk_buff *skb,
3153
+ struct stmmac_tx_queue *tx_q)
3154
+{
3155
+ u16 tag = 0x0, inner_tag = 0x0;
3156
+ u32 inner_type = 0x0;
3157
+ struct dma_desc *p;
3158
+
3159
+ if (!priv->dma_cap.vlins)
3160
+ return false;
3161
+ if (!skb_vlan_tag_present(skb))
3162
+ return false;
3163
+ if (skb->vlan_proto == htons(ETH_P_8021AD)) {
3164
+ inner_tag = skb_vlan_tag_get(skb);
3165
+ inner_type = STMMAC_VLAN_INSERT;
3166
+ }
3167
+
3168
+ tag = skb_vlan_tag_get(skb);
3169
+
3170
+ if (tx_q->tbs & STMMAC_TBS_AVAIL)
3171
+ p = &tx_q->dma_entx[tx_q->cur_tx].basic;
3172
+ else
3173
+ p = &tx_q->dma_tx[tx_q->cur_tx];
3174
+
3175
+ if (stmmac_set_desc_vlan_tag(priv, p, tag, inner_tag, inner_type))
3176
+ return false;
3177
+
3178
+ stmmac_set_tx_owner(priv, p);
3179
+ tx_q->cur_tx = STMMAC_GET_ENTRY(tx_q->cur_tx, priv->dma_tx_size);
3180
+ return true;
27743181 }
27753182
27763183 /**
....@@ -2778,13 +3185,13 @@
27783185 * @priv: driver private structure
27793186 * @des: buffer start address
27803187 * @total_len: total length to fill in descriptors
2781
- * @last_segmant: condition for the last descriptor
3188
+ * @last_segment: condition for the last descriptor
27823189 * @queue: TX queue index
27833190 * Description:
27843191 * This function fills descriptor and request new descriptors according to
27853192 * buffer length to fill
27863193 */
2787
-static void stmmac_tso_allocator(struct stmmac_priv *priv, unsigned int des,
3194
+static void stmmac_tso_allocator(struct stmmac_priv *priv, dma_addr_t des,
27883195 int total_len, bool last_segment, u32 queue)
27893196 {
27903197 struct stmmac_tx_queue *tx_q = &priv->tx_queue[queue];
....@@ -2795,11 +3202,23 @@
27953202 tmp_len = total_len;
27963203
27973204 while (tmp_len > 0) {
2798
- tx_q->cur_tx = STMMAC_GET_ENTRY(tx_q->cur_tx, DMA_TX_SIZE);
2799
- WARN_ON(tx_q->tx_skbuff[tx_q->cur_tx]);
2800
- desc = tx_q->dma_tx + tx_q->cur_tx;
3205
+ dma_addr_t curr_addr;
28013206
2802
- desc->des0 = cpu_to_le32(des + (total_len - tmp_len));
3207
+ tx_q->cur_tx = STMMAC_GET_ENTRY(tx_q->cur_tx,
3208
+ priv->dma_tx_size);
3209
+ WARN_ON(tx_q->tx_skbuff[tx_q->cur_tx]);
3210
+
3211
+ if (tx_q->tbs & STMMAC_TBS_AVAIL)
3212
+ desc = &tx_q->dma_entx[tx_q->cur_tx].basic;
3213
+ else
3214
+ desc = &tx_q->dma_tx[tx_q->cur_tx];
3215
+
3216
+ curr_addr = des + (total_len - tmp_len);
3217
+ if (priv->dma_cap.addr64 <= 32)
3218
+ desc->des0 = cpu_to_le32(curr_addr);
3219
+ else
3220
+ stmmac_set_desc_addr(priv, desc, curr_addr);
3221
+
28033222 buff_size = tmp_len >= TSO_MAX_BUFF_SIZE ?
28043223 TSO_MAX_BUFF_SIZE : tmp_len;
28053224
....@@ -2843,16 +3262,19 @@
28433262 {
28443263 struct dma_desc *desc, *first, *mss_desc = NULL;
28453264 struct stmmac_priv *priv = netdev_priv(dev);
3265
+ int desc_size, tmp_pay_len = 0, first_tx;
28463266 int nfrags = skb_shinfo(skb)->nr_frags;
28473267 u32 queue = skb_get_queue_mapping(skb);
2848
- unsigned int first_entry, des;
2849
- u8 proto_hdr_len, hdr;
3268
+ unsigned int first_entry, tx_packets;
28503269 struct stmmac_tx_queue *tx_q;
2851
- int tmp_pay_len = 0;
3270
+ bool has_vlan, set_ic;
3271
+ u8 proto_hdr_len, hdr;
28523272 u32 pay_len, mss;
3273
+ dma_addr_t des;
28533274 int i;
28543275
28553276 tx_q = &priv->tx_queue[queue];
3277
+ first_tx = tx_q->cur_tx;
28563278
28573279 /* Compute header lengths */
28583280 if (skb_shinfo(skb)->gso_type & SKB_GSO_UDP_L4) {
....@@ -2883,10 +3305,15 @@
28833305
28843306 /* set new MSS value if needed */
28853307 if (mss != tx_q->mss) {
2886
- mss_desc = tx_q->dma_tx + tx_q->cur_tx;
3308
+ if (tx_q->tbs & STMMAC_TBS_AVAIL)
3309
+ mss_desc = &tx_q->dma_entx[tx_q->cur_tx].basic;
3310
+ else
3311
+ mss_desc = &tx_q->dma_tx[tx_q->cur_tx];
3312
+
28873313 stmmac_set_mss(priv, mss_desc, mss);
28883314 tx_q->mss = mss;
2889
- tx_q->cur_tx = STMMAC_GET_ENTRY(tx_q->cur_tx, DMA_TX_SIZE);
3315
+ tx_q->cur_tx = STMMAC_GET_ENTRY(tx_q->cur_tx,
3316
+ priv->dma_tx_size);
28903317 WARN_ON(tx_q->tx_skbuff[tx_q->cur_tx]);
28913318 }
28923319
....@@ -2897,11 +3324,20 @@
28973324 skb->data_len);
28983325 }
28993326
3327
+ /* Check if VLAN can be inserted by HW */
3328
+ has_vlan = stmmac_vlan_insert(priv, skb, tx_q);
3329
+
29003330 first_entry = tx_q->cur_tx;
29013331 WARN_ON(tx_q->tx_skbuff[first_entry]);
29023332
2903
- desc = tx_q->dma_tx + first_entry;
3333
+ if (tx_q->tbs & STMMAC_TBS_AVAIL)
3334
+ desc = &tx_q->dma_entx[first_entry].basic;
3335
+ else
3336
+ desc = &tx_q->dma_tx[first_entry];
29043337 first = desc;
3338
+
3339
+ if (has_vlan)
3340
+ stmmac_set_desc_vlan(priv, first, STMMAC_VLAN_INSERT);
29053341
29063342 /* first descriptor: fill Headers on Buf1 */
29073343 des = dma_map_single(priv->device, skb->data, skb_headlen(skb),
....@@ -2912,14 +3348,21 @@
29123348 tx_q->tx_skbuff_dma[first_entry].buf = des;
29133349 tx_q->tx_skbuff_dma[first_entry].len = skb_headlen(skb);
29143350
2915
- first->des0 = cpu_to_le32(des);
3351
+ if (priv->dma_cap.addr64 <= 32) {
3352
+ first->des0 = cpu_to_le32(des);
29163353
2917
- /* Fill start of payload in buff2 of first descriptor */
2918
- if (pay_len)
2919
- first->des1 = cpu_to_le32(des + proto_hdr_len);
3354
+ /* Fill start of payload in buff2 of first descriptor */
3355
+ if (pay_len)
3356
+ first->des1 = cpu_to_le32(des + proto_hdr_len);
29203357
2921
- /* If needed take extra descriptors to fill the remaining payload */
2922
- tmp_pay_len = pay_len - TSO_MAX_BUFF_SIZE;
3358
+ /* If needed take extra descriptors to fill the remaining payload */
3359
+ tmp_pay_len = pay_len - TSO_MAX_BUFF_SIZE;
3360
+ } else {
3361
+ stmmac_set_desc_addr(priv, first, des);
3362
+ tmp_pay_len = pay_len;
3363
+ des += proto_hdr_len;
3364
+ pay_len = 0;
3365
+ }
29233366
29243367 stmmac_tso_allocator(priv, des, tmp_pay_len, (nfrags == 0), queue);
29253368
....@@ -2946,12 +3389,38 @@
29463389 /* Only the last descriptor gets to point to the skb. */
29473390 tx_q->tx_skbuff[tx_q->cur_tx] = skb;
29483391
3392
+ /* Manage tx mitigation */
3393
+ tx_packets = (tx_q->cur_tx + 1) - first_tx;
3394
+ tx_q->tx_count_frames += tx_packets;
3395
+
3396
+ if ((skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP) && priv->hwts_tx_en)
3397
+ set_ic = true;
3398
+ else if (!priv->tx_coal_frames)
3399
+ set_ic = false;
3400
+ else if (tx_packets > priv->tx_coal_frames)
3401
+ set_ic = true;
3402
+ else if ((tx_q->tx_count_frames % priv->tx_coal_frames) < tx_packets)
3403
+ set_ic = true;
3404
+ else
3405
+ set_ic = false;
3406
+
3407
+ if (set_ic) {
3408
+ if (tx_q->tbs & STMMAC_TBS_AVAIL)
3409
+ desc = &tx_q->dma_entx[tx_q->cur_tx].basic;
3410
+ else
3411
+ desc = &tx_q->dma_tx[tx_q->cur_tx];
3412
+
3413
+ tx_q->tx_count_frames = 0;
3414
+ stmmac_set_tx_ic(priv, desc);
3415
+ priv->xstats.tx_set_ic_bit++;
3416
+ }
3417
+
29493418 /* We've used all descriptors we need for this skb, however,
29503419 * advance cur_tx so that it references a fresh descriptor.
29513420 * ndo_start_xmit will fill this descriptor the next time it's
29523421 * called and stmmac_tx_clean may clean up to this descriptor.
29533422 */
2954
- tx_q->cur_tx = STMMAC_GET_ENTRY(tx_q->cur_tx, DMA_TX_SIZE);
3423
+ tx_q->cur_tx = STMMAC_GET_ENTRY(tx_q->cur_tx, priv->dma_tx_size);
29553424
29563425 if (unlikely(stmmac_tx_avail(priv, queue) <= (MAX_SKB_FRAGS + 1))) {
29573426 netif_dbg(priv, hw, priv->dev, "%s: stop transmitted packets\n",
....@@ -2963,18 +3432,8 @@
29633432 priv->xstats.tx_tso_frames++;
29643433 priv->xstats.tx_tso_nfrags += nfrags;
29653434
2966
- /* Manage tx mitigation */
2967
- tx_q->tx_count_frames += nfrags + 1;
2968
- if (likely(priv->tx_coal_frames > tx_q->tx_count_frames) &&
2969
- !(priv->synopsys_id >= DWMAC_CORE_4_00 &&
2970
- (skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP) &&
2971
- priv->hwts_tx_en)) {
2972
- stmmac_tx_timer_arm(priv, queue);
2973
- } else {
2974
- tx_q->tx_count_frames = 0;
2975
- stmmac_set_tx_ic(priv, desc);
2976
- priv->xstats.tx_set_ic_bit++;
2977
- }
3435
+ if (priv->sarc_type)
3436
+ stmmac_set_desc_sarc(priv, first, priv->sarc_type);
29783437
29793438 skb_tx_timestamp(skb);
29803439
....@@ -3013,16 +3472,18 @@
30133472 pr_info("%s: curr=%d dirty=%d f=%d, e=%d, f_p=%p, nfrags %d\n",
30143473 __func__, tx_q->cur_tx, tx_q->dirty_tx, first_entry,
30153474 tx_q->cur_tx, first, nfrags);
3016
-
3017
- stmmac_display_ring(priv, (void *)tx_q->dma_tx, DMA_TX_SIZE, 0);
3018
-
30193475 pr_info(">>> frame to be transmitted: ");
30203476 print_pkt(skb->data, skb_headlen(skb));
30213477 }
30223478
30233479 netdev_tx_sent_queue(netdev_get_tx_queue(dev, queue), skb->len);
30243480
3025
- tx_q->tx_tail_addr = tx_q->dma_tx_phy + (tx_q->cur_tx * sizeof(*desc));
3481
+ if (tx_q->tbs & STMMAC_TBS_AVAIL)
3482
+ desc_size = sizeof(struct dma_edesc);
3483
+ else
3484
+ desc_size = sizeof(struct dma_desc);
3485
+
3486
+ tx_q->tx_tail_addr = tx_q->dma_tx_phy + (tx_q->cur_tx * desc_size);
30263487 stmmac_set_tx_tail_ptr(priv, priv->ioaddr, tx_q->tx_tail_addr, queue);
30273488 stmmac_tx_timer_arm(priv, queue);
30283489
....@@ -3045,20 +3506,22 @@
30453506 */
30463507 static netdev_tx_t stmmac_xmit(struct sk_buff *skb, struct net_device *dev)
30473508 {
3509
+ unsigned int first_entry, tx_packets, enh_desc;
30483510 struct stmmac_priv *priv = netdev_priv(dev);
30493511 unsigned int nopaged_len = skb_headlen(skb);
30503512 int i, csum_insertion = 0, is_jumbo = 0;
30513513 u32 queue = skb_get_queue_mapping(skb);
30523514 int nfrags = skb_shinfo(skb)->nr_frags;
30533515 int gso = skb_shinfo(skb)->gso_type;
3054
- int entry;
3055
- unsigned int first_entry;
3516
+ struct dma_edesc *tbs_desc = NULL;
3517
+ int entry, desc_size, first_tx;
30563518 struct dma_desc *desc, *first;
30573519 struct stmmac_tx_queue *tx_q;
3058
- unsigned int enh_desc;
3059
- unsigned int des;
3520
+ bool has_vlan, set_ic;
3521
+ dma_addr_t des;
30603522
30613523 tx_q = &priv->tx_queue[queue];
3524
+ first_tx = tx_q->cur_tx;
30623525
30633526 if (priv->tx_path_in_lpi_mode)
30643527 stmmac_disable_eee_mode(priv);
....@@ -3083,6 +3546,9 @@
30833546 return NETDEV_TX_BUSY;
30843547 }
30853548
3549
+ /* Check if VLAN can be inserted by HW */
3550
+ has_vlan = stmmac_vlan_insert(priv, skb, tx_q);
3551
+
30863552 entry = tx_q->cur_tx;
30873553 first_entry = entry;
30883554 WARN_ON(tx_q->tx_skbuff[first_entry]);
....@@ -3091,10 +3557,15 @@
30913557
30923558 if (likely(priv->extend_desc))
30933559 desc = (struct dma_desc *)(tx_q->dma_etx + entry);
3560
+ else if (tx_q->tbs & STMMAC_TBS_AVAIL)
3561
+ desc = &tx_q->dma_entx[entry].basic;
30943562 else
30953563 desc = tx_q->dma_tx + entry;
30963564
30973565 first = desc;
3566
+
3567
+ if (has_vlan)
3568
+ stmmac_set_desc_vlan(priv, first, STMMAC_VLAN_INSERT);
30983569
30993570 enh_desc = priv->plat->enh_desc;
31003571 /* To program the descriptors according to the size of the frame */
....@@ -3112,11 +3583,13 @@
31123583 int len = skb_frag_size(frag);
31133584 bool last_segment = (i == (nfrags - 1));
31143585
3115
- entry = STMMAC_GET_ENTRY(entry, DMA_TX_SIZE);
3586
+ entry = STMMAC_GET_ENTRY(entry, priv->dma_tx_size);
31163587 WARN_ON(tx_q->tx_skbuff[entry]);
31173588
31183589 if (likely(priv->extend_desc))
31193590 desc = (struct dma_desc *)(tx_q->dma_etx + entry);
3591
+ else if (tx_q->tbs & STMMAC_TBS_AVAIL)
3592
+ desc = &tx_q->dma_entx[entry].basic;
31203593 else
31213594 desc = tx_q->dma_tx + entry;
31223595
....@@ -3141,28 +3614,51 @@
31413614 /* Only the last descriptor gets to point to the skb. */
31423615 tx_q->tx_skbuff[entry] = skb;
31433616
3617
+ /* According to the coalesce parameter the IC bit for the latest
3618
+ * segment is reset and the timer re-started to clean the tx status.
3619
+ * This approach takes care about the fragments: desc is the first
3620
+ * element in case of no SG.
3621
+ */
3622
+ tx_packets = (entry + 1) - first_tx;
3623
+ tx_q->tx_count_frames += tx_packets;
3624
+
3625
+ if ((skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP) && priv->hwts_tx_en)
3626
+ set_ic = true;
3627
+ else if (!priv->tx_coal_frames)
3628
+ set_ic = false;
3629
+ else if (tx_packets > priv->tx_coal_frames)
3630
+ set_ic = true;
3631
+ else if ((tx_q->tx_count_frames % priv->tx_coal_frames) < tx_packets)
3632
+ set_ic = true;
3633
+ else
3634
+ set_ic = false;
3635
+
3636
+ if (set_ic) {
3637
+ if (likely(priv->extend_desc))
3638
+ desc = &tx_q->dma_etx[entry].basic;
3639
+ else if (tx_q->tbs & STMMAC_TBS_AVAIL)
3640
+ desc = &tx_q->dma_entx[entry].basic;
3641
+ else
3642
+ desc = &tx_q->dma_tx[entry];
3643
+
3644
+ tx_q->tx_count_frames = 0;
3645
+ stmmac_set_tx_ic(priv, desc);
3646
+ priv->xstats.tx_set_ic_bit++;
3647
+ }
3648
+
31443649 /* We've used all descriptors we need for this skb, however,
31453650 * advance cur_tx so that it references a fresh descriptor.
31463651 * ndo_start_xmit will fill this descriptor the next time it's
31473652 * called and stmmac_tx_clean may clean up to this descriptor.
31483653 */
3149
- entry = STMMAC_GET_ENTRY(entry, DMA_TX_SIZE);
3654
+ entry = STMMAC_GET_ENTRY(entry, priv->dma_tx_size);
31503655 tx_q->cur_tx = entry;
31513656
31523657 if (netif_msg_pktdata(priv)) {
3153
- void *tx_head;
3154
-
31553658 netdev_dbg(priv->dev,
31563659 "%s: curr=%d dirty=%d f=%d, e=%d, first=%p, nfrags=%d",
31573660 __func__, tx_q->cur_tx, tx_q->dirty_tx, first_entry,
31583661 entry, first, nfrags);
3159
-
3160
- if (priv->extend_desc)
3161
- tx_head = (void *)tx_q->dma_etx;
3162
- else
3163
- tx_head = (void *)tx_q->dma_tx;
3164
-
3165
- stmmac_display_ring(priv, tx_head, DMA_TX_SIZE, false);
31663662
31673663 netdev_dbg(priv->dev, ">>> frame to be transmitted: ");
31683664 print_pkt(skb->data, skb->len);
....@@ -3176,22 +3672,8 @@
31763672
31773673 dev->stats.tx_bytes += skb->len;
31783674
3179
- /* According to the coalesce parameter the IC bit for the latest
3180
- * segment is reset and the timer re-started to clean the tx status.
3181
- * This approach takes care about the fragments: desc is the first
3182
- * element in case of no SG.
3183
- */
3184
- tx_q->tx_count_frames += nfrags + 1;
3185
- if (likely(priv->tx_coal_frames > tx_q->tx_count_frames) &&
3186
- !(priv->synopsys_id >= DWMAC_CORE_4_00 &&
3187
- (skb_shinfo(skb)->tx_flags & SKBTX_HW_TSTAMP) &&
3188
- priv->hwts_tx_en)) {
3189
- stmmac_tx_timer_arm(priv, queue);
3190
- } else {
3191
- tx_q->tx_count_frames = 0;
3192
- stmmac_set_tx_ic(priv, desc);
3193
- priv->xstats.tx_set_ic_bit++;
3194
- }
3675
+ if (priv->sarc_type)
3676
+ stmmac_set_desc_sarc(priv, first, priv->sarc_type);
31953677
31963678 skb_tx_timestamp(skb);
31973679
....@@ -3223,11 +3705,18 @@
32233705
32243706 /* Prepare the first descriptor setting the OWN bit too */
32253707 stmmac_prepare_tx_desc(priv, first, 1, nopaged_len,
3226
- csum_insertion, priv->mode, 1, last_segment,
3708
+ csum_insertion, priv->mode, 0, last_segment,
32273709 skb->len);
3228
- } else {
3229
- stmmac_set_tx_owner(priv, first);
32303710 }
3711
+
3712
+ if (tx_q->tbs & STMMAC_TBS_EN) {
3713
+ struct timespec64 ts = ns_to_timespec64(skb->tstamp);
3714
+
3715
+ tbs_desc = &tx_q->dma_entx[first_entry];
3716
+ stmmac_set_desc_tbs(priv, tbs_desc, ts.tv_sec, ts.tv_nsec);
3717
+ }
3718
+
3719
+ stmmac_set_tx_owner(priv, first);
32313720
32323721 /* The own bit must be the latest setting done when prepare the
32333722 * descriptor and then barrier is needed to make sure that
....@@ -3239,7 +3728,14 @@
32393728
32403729 stmmac_enable_dma_transmission(priv, priv->ioaddr);
32413730
3242
- tx_q->tx_tail_addr = tx_q->dma_tx_phy + (tx_q->cur_tx * sizeof(*desc));
3731
+ if (likely(priv->extend_desc))
3732
+ desc_size = sizeof(struct dma_extended_desc);
3733
+ else if (tx_q->tbs & STMMAC_TBS_AVAIL)
3734
+ desc_size = sizeof(struct dma_edesc);
3735
+ else
3736
+ desc_size = sizeof(struct dma_desc);
3737
+
3738
+ tx_q->tx_tail_addr = tx_q->dma_tx_phy + (tx_q->cur_tx * desc_size);
32433739 stmmac_set_tx_tail_ptr(priv, priv->ioaddr, tx_q->tx_tail_addr, queue);
32443740 stmmac_tx_timer_arm(priv, queue);
32453741
....@@ -3273,15 +3769,6 @@
32733769 }
32743770 }
32753771
3276
-
3277
-static inline int stmmac_rx_threshold_count(struct stmmac_rx_queue *rx_q)
3278
-{
3279
- if (rx_q->rx_zeroc_thresh < STMMAC_RX_THRESH)
3280
- return 0;
3281
-
3282
- return 1;
3283
-}
3284
-
32853772 /**
32863773 * stmmac_rx_refill - refill used skb preallocated buffers
32873774 * @priv: driver private structure
....@@ -3292,63 +3779,115 @@
32923779 static inline void stmmac_rx_refill(struct stmmac_priv *priv, u32 queue)
32933780 {
32943781 struct stmmac_rx_queue *rx_q = &priv->rx_queue[queue];
3295
- int dirty = stmmac_rx_dirty(priv, queue);
3782
+ int len, dirty = stmmac_rx_dirty(priv, queue);
32963783 unsigned int entry = rx_q->dirty_rx;
3784
+ gfp_t gfp = (GFP_ATOMIC | __GFP_NOWARN);
32973785
3298
- int bfsize = priv->dma_buf_sz;
3786
+ if (priv->dma_cap.addr64 <= 32)
3787
+ gfp |= GFP_DMA32;
3788
+
3789
+ len = DIV_ROUND_UP(priv->dma_buf_sz, PAGE_SIZE) * PAGE_SIZE;
32993790
33003791 while (dirty-- > 0) {
3792
+ struct stmmac_rx_buffer *buf = &rx_q->buf_pool[entry];
33013793 struct dma_desc *p;
3794
+ bool use_rx_wd;
33023795
33033796 if (priv->extend_desc)
33043797 p = (struct dma_desc *)(rx_q->dma_erx + entry);
33053798 else
33063799 p = rx_q->dma_rx + entry;
33073800
3308
- if (likely(!rx_q->rx_skbuff[entry])) {
3309
- struct sk_buff *skb;
3310
-
3311
- skb = netdev_alloc_skb_ip_align(priv->dev, bfsize);
3312
- if (unlikely(!skb)) {
3313
- /* so for a while no zero-copy! */
3314
- rx_q->rx_zeroc_thresh = STMMAC_RX_THRESH;
3315
- if (unlikely(net_ratelimit()))
3316
- dev_err(priv->device,
3317
- "fail to alloc skb entry %d\n",
3318
- entry);
3801
+ if (!buf->page) {
3802
+ buf->page = page_pool_alloc_pages(rx_q->page_pool, gfp);
3803
+ if (!buf->page)
33193804 break;
3320
- }
3321
-
3322
- rx_q->rx_skbuff[entry] = skb;
3323
- rx_q->rx_skbuff_dma[entry] =
3324
- dma_map_single(priv->device, skb->data, bfsize,
3325
- DMA_FROM_DEVICE);
3326
- if (dma_mapping_error(priv->device,
3327
- rx_q->rx_skbuff_dma[entry])) {
3328
- netdev_err(priv->dev, "Rx DMA map failed\n");
3329
- dev_kfree_skb(skb);
3330
- break;
3331
- }
3332
-
3333
- stmmac_set_desc_addr(priv, p, rx_q->rx_skbuff_dma[entry]);
3334
- stmmac_refill_desc3(priv, rx_q, p);
3335
-
3336
- if (rx_q->rx_zeroc_thresh > 0)
3337
- rx_q->rx_zeroc_thresh--;
3338
-
3339
- netif_dbg(priv, rx_status, priv->dev,
3340
- "refill entry #%d\n", entry);
33413805 }
3342
- dma_wmb();
33433806
3344
- stmmac_set_rx_owner(priv, p, priv->use_riwt);
3807
+ if (priv->sph && !buf->sec_page) {
3808
+ buf->sec_page = page_pool_alloc_pages(rx_q->page_pool, gfp);
3809
+ if (!buf->sec_page)
3810
+ break;
3811
+
3812
+ buf->sec_addr = page_pool_get_dma_addr(buf->sec_page);
3813
+ }
3814
+
3815
+ buf->addr = page_pool_get_dma_addr(buf->page);
3816
+ stmmac_set_desc_addr(priv, p, buf->addr);
3817
+ if (priv->sph)
3818
+ stmmac_set_desc_sec_addr(priv, p, buf->sec_addr, true);
3819
+ else
3820
+ stmmac_set_desc_sec_addr(priv, p, buf->sec_addr, false);
3821
+ stmmac_refill_desc3(priv, rx_q, p);
3822
+
3823
+ rx_q->rx_count_frames++;
3824
+ rx_q->rx_count_frames += priv->rx_coal_frames;
3825
+ if (rx_q->rx_count_frames > priv->rx_coal_frames)
3826
+ rx_q->rx_count_frames = 0;
3827
+
3828
+ use_rx_wd = !priv->rx_coal_frames;
3829
+ use_rx_wd |= rx_q->rx_count_frames > 0;
3830
+ if (!priv->use_riwt)
3831
+ use_rx_wd = false;
33453832
33463833 dma_wmb();
3834
+ stmmac_set_rx_owner(priv, p, use_rx_wd);
33473835
3348
- entry = STMMAC_GET_ENTRY(entry, DMA_RX_SIZE);
3836
+ entry = STMMAC_GET_ENTRY(entry, priv->dma_rx_size);
33493837 }
33503838 rx_q->dirty_rx = entry;
3839
+ rx_q->rx_tail_addr = rx_q->dma_rx_phy +
3840
+ (rx_q->dirty_rx * sizeof(struct dma_desc));
33513841 stmmac_set_rx_tail_ptr(priv, priv->ioaddr, rx_q->rx_tail_addr, queue);
3842
+}
3843
+
3844
+static unsigned int stmmac_rx_buf1_len(struct stmmac_priv *priv,
3845
+ struct dma_desc *p,
3846
+ int status, unsigned int len)
3847
+{
3848
+ unsigned int plen = 0, hlen = 0;
3849
+ int coe = priv->hw->rx_csum;
3850
+
3851
+ /* Not first descriptor, buffer is always zero */
3852
+ if (priv->sph && len)
3853
+ return 0;
3854
+
3855
+ /* First descriptor, get split header length */
3856
+ stmmac_get_rx_header_len(priv, p, &hlen);
3857
+ if (priv->sph && hlen) {
3858
+ priv->xstats.rx_split_hdr_pkt_n++;
3859
+ return hlen;
3860
+ }
3861
+
3862
+ /* First descriptor, not last descriptor and not split header */
3863
+ if (status & rx_not_ls)
3864
+ return priv->dma_buf_sz;
3865
+
3866
+ plen = stmmac_get_rx_frame_len(priv, p, coe);
3867
+
3868
+ /* First descriptor and last descriptor and not split header */
3869
+ return min_t(unsigned int, priv->dma_buf_sz, plen);
3870
+}
3871
+
3872
+static unsigned int stmmac_rx_buf2_len(struct stmmac_priv *priv,
3873
+ struct dma_desc *p,
3874
+ int status, unsigned int len)
3875
+{
3876
+ int coe = priv->hw->rx_csum;
3877
+ unsigned int plen = 0;
3878
+
3879
+ /* Not split header, buffer is not available */
3880
+ if (!priv->sph)
3881
+ return 0;
3882
+
3883
+ /* Not last descriptor */
3884
+ if (status & rx_not_ls)
3885
+ return priv->dma_buf_sz;
3886
+
3887
+ plen = stmmac_get_rx_frame_len(priv, p, coe);
3888
+
3889
+ /* Last descriptor */
3890
+ return plen - len;
33523891 }
33533892
33543893 /**
....@@ -3363,30 +3902,54 @@
33633902 {
33643903 struct stmmac_rx_queue *rx_q = &priv->rx_queue[queue];
33653904 struct stmmac_channel *ch = &priv->channel[queue];
3905
+ unsigned int count = 0, error = 0, len = 0;
3906
+ int status = 0, coe = priv->hw->rx_csum;
33663907 unsigned int next_entry = rx_q->cur_rx;
3367
- int coe = priv->hw->rx_csum;
3368
- unsigned int count = 0;
3369
- bool xmac;
3370
-
3371
- xmac = priv->plat->has_gmac4 || priv->plat->has_xgmac;
3908
+ unsigned int desc_size;
3909
+ struct sk_buff *skb = NULL;
33723910
33733911 if (netif_msg_rx_status(priv)) {
33743912 void *rx_head;
33753913
33763914 netdev_dbg(priv->dev, "%s: descriptor ring:\n", __func__);
3377
- if (priv->extend_desc)
3915
+ if (priv->extend_desc) {
33783916 rx_head = (void *)rx_q->dma_erx;
3379
- else
3917
+ desc_size = sizeof(struct dma_extended_desc);
3918
+ } else {
33803919 rx_head = (void *)rx_q->dma_rx;
3920
+ desc_size = sizeof(struct dma_desc);
3921
+ }
33813922
3382
- stmmac_display_ring(priv, rx_head, DMA_RX_SIZE, true);
3923
+ stmmac_display_ring(priv, rx_head, priv->dma_rx_size, true,
3924
+ rx_q->dma_rx_phy, desc_size);
33833925 }
33843926 while (count < limit) {
3385
- int entry, status;
3386
- struct dma_desc *p;
3387
- struct dma_desc *np;
3927
+ unsigned int buf1_len = 0, buf2_len = 0;
3928
+ enum pkt_hash_types hash_type;
3929
+ struct stmmac_rx_buffer *buf;
3930
+ struct dma_desc *np, *p;
3931
+ int entry;
3932
+ u32 hash;
33883933
3934
+ if (!count && rx_q->state_saved) {
3935
+ skb = rx_q->state.skb;
3936
+ error = rx_q->state.error;
3937
+ len = rx_q->state.len;
3938
+ } else {
3939
+ rx_q->state_saved = false;
3940
+ skb = NULL;
3941
+ error = 0;
3942
+ len = 0;
3943
+ }
3944
+
3945
+ if ((count >= limit - 1) && limit > 1)
3946
+ break;
3947
+
3948
+read_again:
3949
+ buf1_len = 0;
3950
+ buf2_len = 0;
33893951 entry = next_entry;
3952
+ buf = &rx_q->buf_pool[entry];
33903953
33913954 if (priv->extend_desc)
33923955 p = (struct dma_desc *)(rx_q->dma_erx + entry);
....@@ -3400,9 +3963,8 @@
34003963 if (unlikely(status & dma_own))
34013964 break;
34023965
3403
- count++;
3404
-
3405
- rx_q->cur_rx = STMMAC_GET_ENTRY(rx_q->cur_rx, DMA_RX_SIZE);
3966
+ rx_q->cur_rx = STMMAC_GET_ENTRY(rx_q->cur_rx,
3967
+ priv->dma_rx_size);
34063968 next_entry = rx_q->cur_rx;
34073969
34083970 if (priv->extend_desc)
....@@ -3416,133 +3978,126 @@
34163978 stmmac_rx_extended_status(priv, &priv->dev->stats,
34173979 &priv->xstats, rx_q->dma_erx + entry);
34183980 if (unlikely(status == discard_frame)) {
3419
- priv->dev->stats.rx_errors++;
3420
- if (priv->hwts_rx_en && !priv->extend_desc) {
3421
- /* DESC2 & DESC3 will be overwritten by device
3422
- * with timestamp value, hence reinitialize
3423
- * them in stmmac_rx_refill() function so that
3424
- * device can reuse it.
3425
- */
3426
- dev_kfree_skb_any(rx_q->rx_skbuff[entry]);
3427
- rx_q->rx_skbuff[entry] = NULL;
3428
- dma_unmap_single(priv->device,
3429
- rx_q->rx_skbuff_dma[entry],
3430
- priv->dma_buf_sz,
3431
- DMA_FROM_DEVICE);
3432
- }
3433
- } else {
3434
- struct sk_buff *skb;
3435
- int frame_len;
3436
- unsigned int des;
3437
-
3438
- stmmac_get_desc_addr(priv, p, &des);
3439
- frame_len = stmmac_get_rx_frame_len(priv, p, coe);
3440
-
3441
- /* If frame length is greater than skb buffer size
3442
- * (preallocated during init) then the packet is
3443
- * ignored
3444
- */
3445
- if (frame_len > priv->dma_buf_sz) {
3446
- if (net_ratelimit())
3447
- netdev_err(priv->dev,
3448
- "len %d larger than size (%d)\n",
3449
- frame_len, priv->dma_buf_sz);
3450
- priv->dev->stats.rx_length_errors++;
3451
- continue;
3452
- }
3453
-
3454
- /* ACS is set; GMAC core strips PAD/FCS for IEEE 802.3
3455
- * Type frames (LLC/LLC-SNAP)
3456
- *
3457
- * llc_snap is never checked in GMAC >= 4, so this ACS
3458
- * feature is always disabled and packets need to be
3459
- * stripped manually.
3460
- */
3461
- if (unlikely(priv->synopsys_id >= DWMAC_CORE_4_00) ||
3462
- unlikely(status != llc_snap))
3463
- frame_len -= ETH_FCS_LEN;
3464
-
3465
- if (netif_msg_rx_status(priv)) {
3466
- netdev_dbg(priv->dev, "\tdesc: %p [entry %d] buff=0x%x\n",
3467
- p, entry, des);
3468
- netdev_dbg(priv->dev, "frame size %d, COE: %d\n",
3469
- frame_len, status);
3470
- }
3471
-
3472
- /* The zero-copy is always used for all the sizes
3473
- * in case of GMAC4 because it needs
3474
- * to refill the used descriptors, always.
3475
- */
3476
- if (unlikely(!xmac &&
3477
- ((frame_len < priv->rx_copybreak) ||
3478
- stmmac_rx_threshold_count(rx_q)))) {
3479
- skb = netdev_alloc_skb_ip_align(priv->dev,
3480
- frame_len);
3481
- if (unlikely(!skb)) {
3482
- if (net_ratelimit())
3483
- dev_warn(priv->device,
3484
- "packet dropped\n");
3485
- priv->dev->stats.rx_dropped++;
3486
- continue;
3487
- }
3488
-
3489
- dma_sync_single_for_cpu(priv->device,
3490
- rx_q->rx_skbuff_dma
3491
- [entry], frame_len,
3492
- DMA_FROM_DEVICE);
3493
- skb_copy_to_linear_data(skb,
3494
- rx_q->
3495
- rx_skbuff[entry]->data,
3496
- frame_len);
3497
-
3498
- skb_put(skb, frame_len);
3499
- dma_sync_single_for_device(priv->device,
3500
- rx_q->rx_skbuff_dma
3501
- [entry], frame_len,
3502
- DMA_FROM_DEVICE);
3503
- } else {
3504
- skb = rx_q->rx_skbuff[entry];
3505
- if (unlikely(!skb)) {
3506
- if (net_ratelimit())
3507
- netdev_err(priv->dev,
3508
- "%s: Inconsistent Rx chain\n",
3509
- priv->dev->name);
3510
- priv->dev->stats.rx_dropped++;
3511
- continue;
3512
- }
3513
- prefetch(skb->data - NET_IP_ALIGN);
3514
- rx_q->rx_skbuff[entry] = NULL;
3515
- rx_q->rx_zeroc_thresh++;
3516
-
3517
- skb_put(skb, frame_len);
3518
- dma_unmap_single(priv->device,
3519
- rx_q->rx_skbuff_dma[entry],
3520
- priv->dma_buf_sz,
3521
- DMA_FROM_DEVICE);
3522
- }
3523
-
3524
- if (netif_msg_pktdata(priv)) {
3525
- netdev_dbg(priv->dev, "frame received (%dbytes)",
3526
- frame_len);
3527
- print_pkt(skb->data, frame_len);
3528
- }
3529
-
3530
- stmmac_get_rx_hwtstamp(priv, p, np, skb);
3531
-
3532
- stmmac_rx_vlan(priv->dev, skb);
3533
-
3534
- skb->protocol = eth_type_trans(skb, priv->dev);
3535
-
3536
- if (unlikely(!coe))
3537
- skb_checksum_none_assert(skb);
3538
- else
3539
- skb->ip_summed = CHECKSUM_UNNECESSARY;
3540
-
3541
- napi_gro_receive(&ch->napi, skb);
3542
-
3543
- priv->dev->stats.rx_packets++;
3544
- priv->dev->stats.rx_bytes += frame_len;
3981
+ page_pool_recycle_direct(rx_q->page_pool, buf->page);
3982
+ buf->page = NULL;
3983
+ error = 1;
3984
+ if (!priv->hwts_rx_en)
3985
+ priv->dev->stats.rx_errors++;
35453986 }
3987
+
3988
+ if (unlikely(error && (status & rx_not_ls)))
3989
+ goto read_again;
3990
+ if (unlikely(error)) {
3991
+ dev_kfree_skb(skb);
3992
+ skb = NULL;
3993
+ count++;
3994
+ continue;
3995
+ }
3996
+
3997
+ /* Buffer is good. Go on. */
3998
+
3999
+ prefetch(page_address(buf->page));
4000
+ if (buf->sec_page)
4001
+ prefetch(page_address(buf->sec_page));
4002
+
4003
+ buf1_len = stmmac_rx_buf1_len(priv, p, status, len);
4004
+ len += buf1_len;
4005
+ buf2_len = stmmac_rx_buf2_len(priv, p, status, len);
4006
+ len += buf2_len;
4007
+
4008
+ /* ACS is set; GMAC core strips PAD/FCS for IEEE 802.3
4009
+ * Type frames (LLC/LLC-SNAP)
4010
+ *
4011
+ * llc_snap is never checked in GMAC >= 4, so this ACS
4012
+ * feature is always disabled and packets need to be
4013
+ * stripped manually.
4014
+ */
4015
+ if (likely(!(status & rx_not_ls)) &&
4016
+ (likely(priv->synopsys_id >= DWMAC_CORE_4_00) ||
4017
+ unlikely(status != llc_snap))) {
4018
+ if (buf2_len)
4019
+ buf2_len -= ETH_FCS_LEN;
4020
+ else
4021
+ buf1_len -= ETH_FCS_LEN;
4022
+
4023
+ len -= ETH_FCS_LEN;
4024
+ }
4025
+
4026
+ if (!skb) {
4027
+ skb = napi_alloc_skb(&ch->rx_napi, buf1_len);
4028
+ if (!skb) {
4029
+ priv->dev->stats.rx_dropped++;
4030
+ count++;
4031
+ goto drain_data;
4032
+ }
4033
+
4034
+ dma_sync_single_for_cpu(priv->device, buf->addr,
4035
+ buf1_len, DMA_FROM_DEVICE);
4036
+ skb_copy_to_linear_data(skb, page_address(buf->page),
4037
+ buf1_len);
4038
+ skb_put(skb, buf1_len);
4039
+
4040
+ /* Data payload copied into SKB, page ready for recycle */
4041
+ page_pool_recycle_direct(rx_q->page_pool, buf->page);
4042
+ buf->page = NULL;
4043
+ } else if (buf1_len) {
4044
+ dma_sync_single_for_cpu(priv->device, buf->addr,
4045
+ buf1_len, DMA_FROM_DEVICE);
4046
+ skb_add_rx_frag(skb, skb_shinfo(skb)->nr_frags,
4047
+ buf->page, 0, buf1_len,
4048
+ priv->dma_buf_sz);
4049
+
4050
+ /* Data payload appended into SKB */
4051
+ page_pool_release_page(rx_q->page_pool, buf->page);
4052
+ buf->page = NULL;
4053
+ }
4054
+
4055
+ if (buf2_len) {
4056
+ dma_sync_single_for_cpu(priv->device, buf->sec_addr,
4057
+ buf2_len, DMA_FROM_DEVICE);
4058
+ skb_add_rx_frag(skb, skb_shinfo(skb)->nr_frags,
4059
+ buf->sec_page, 0, buf2_len,
4060
+ priv->dma_buf_sz);
4061
+
4062
+ /* Data payload appended into SKB */
4063
+ page_pool_release_page(rx_q->page_pool, buf->sec_page);
4064
+ buf->sec_page = NULL;
4065
+ }
4066
+
4067
+drain_data:
4068
+ if (likely(status & rx_not_ls))
4069
+ goto read_again;
4070
+ if (!skb)
4071
+ continue;
4072
+
4073
+ /* Got entire packet into SKB. Finish it. */
4074
+
4075
+ stmmac_get_rx_hwtstamp(priv, p, np, skb);
4076
+ stmmac_rx_vlan(priv->dev, skb);
4077
+ skb->protocol = eth_type_trans(skb, priv->dev);
4078
+
4079
+ if (unlikely(!coe))
4080
+ skb_checksum_none_assert(skb);
4081
+ else
4082
+ skb->ip_summed = CHECKSUM_UNNECESSARY;
4083
+
4084
+ if (!stmmac_get_rx_hash(priv, p, &hash, &hash_type))
4085
+ skb_set_hash(skb, hash, hash_type);
4086
+
4087
+ skb_record_rx_queue(skb, queue);
4088
+ napi_gro_receive(&ch->rx_napi, skb);
4089
+ skb = NULL;
4090
+
4091
+ priv->dev->stats.rx_packets++;
4092
+ priv->dev->stats.rx_bytes += len;
4093
+ count++;
4094
+ }
4095
+
4096
+ if (status & rx_not_ls || skb) {
4097
+ rx_q->state_saved = true;
4098
+ rx_q->state.skb = skb;
4099
+ rx_q->state.error = error;
4100
+ rx_q->state.len = len;
35464101 }
35474102
35484103 stmmac_rx_refill(priv, queue);
....@@ -3552,40 +4107,47 @@
35524107 return count;
35534108 }
35544109
3555
-/**
3556
- * stmmac_poll - stmmac poll method (NAPI)
3557
- * @napi : pointer to the napi structure.
3558
- * @budget : maximum number of packets that the current CPU can receive from
3559
- * all interfaces.
3560
- * Description :
3561
- * To look at the incoming frames and clear the tx resources.
3562
- */
3563
-static int stmmac_napi_poll(struct napi_struct *napi, int budget)
4110
+static int stmmac_napi_poll_rx(struct napi_struct *napi, int budget)
35644111 {
35654112 struct stmmac_channel *ch =
3566
- container_of(napi, struct stmmac_channel, napi);
4113
+ container_of(napi, struct stmmac_channel, rx_napi);
35674114 struct stmmac_priv *priv = ch->priv_data;
3568
- int work_done, rx_done = 0, tx_done = 0;
35694115 u32 chan = ch->index;
4116
+ int work_done;
35704117
35714118 priv->xstats.napi_poll++;
35724119
3573
- if (ch->has_tx)
3574
- tx_done = stmmac_tx_clean(priv, budget, chan);
3575
- if (ch->has_rx)
3576
- rx_done = stmmac_rx(priv, budget, chan);
4120
+ work_done = stmmac_rx(priv, budget, chan);
4121
+ if (work_done < budget && napi_complete_done(napi, work_done)) {
4122
+ unsigned long flags;
35774123
3578
- work_done = max(rx_done, tx_done);
4124
+ spin_lock_irqsave(&ch->lock, flags);
4125
+ stmmac_enable_dma_irq(priv, priv->ioaddr, chan, 1, 0);
4126
+ spin_unlock_irqrestore(&ch->lock, flags);
4127
+ }
4128
+
4129
+ return work_done;
4130
+}
4131
+
4132
+static int stmmac_napi_poll_tx(struct napi_struct *napi, int budget)
4133
+{
4134
+ struct stmmac_channel *ch =
4135
+ container_of(napi, struct stmmac_channel, tx_napi);
4136
+ struct stmmac_priv *priv = ch->priv_data;
4137
+ u32 chan = ch->index;
4138
+ int work_done;
4139
+
4140
+ priv->xstats.napi_poll++;
4141
+
4142
+ work_done = stmmac_tx_clean(priv, priv->dma_tx_size, chan);
35794143 work_done = min(work_done, budget);
35804144
35814145 if (work_done < budget && napi_complete_done(napi, work_done)) {
3582
- int stat;
4146
+ unsigned long flags;
35834147
3584
- stmmac_enable_dma_irq(priv, priv->ioaddr, chan);
3585
- stat = stmmac_dma_interrupt_status(priv, priv->ioaddr,
3586
- &priv->xstats, chan);
3587
- if (stat && napi_reschedule(napi))
3588
- stmmac_disable_dma_irq(priv, priv->ioaddr, chan);
4148
+ spin_lock_irqsave(&ch->lock, flags);
4149
+ stmmac_enable_dma_irq(priv, priv->ioaddr, chan, 0, 1);
4150
+ spin_unlock_irqrestore(&ch->lock, flags);
35894151 }
35904152
35914153 return work_done;
....@@ -3594,12 +4156,13 @@
35944156 /**
35954157 * stmmac_tx_timeout
35964158 * @dev : Pointer to net device structure
4159
+ * @txqueue: the index of the hanging transmit queue
35974160 * Description: this function is called when a packet transmission fails to
35984161 * complete within a reasonable time. The driver will mark the error in the
35994162 * netdev structure and arrange for the device to be reset to a sane state
36004163 * in order to transmit a new packet.
36014164 */
3602
-static void stmmac_tx_timeout(struct net_device *dev)
4165
+static void stmmac_tx_timeout(struct net_device *dev, unsigned int txqueue)
36034166 {
36044167 struct stmmac_priv *priv = netdev_priv(dev);
36054168
....@@ -3696,6 +4259,8 @@
36964259 netdev_features_t features)
36974260 {
36984261 struct stmmac_priv *priv = netdev_priv(netdev);
4262
+ bool sph_en;
4263
+ u32 chan;
36994264
37004265 /* Keep the COE Type in case of csum is supporting */
37014266 if (features & NETIF_F_RXCSUM)
....@@ -3706,6 +4271,10 @@
37064271 * fixed in case of issue.
37074272 */
37084273 stmmac_rx_ipc(priv, priv->hw);
4274
+
4275
+ sph_en = (priv->hw->rx_csum > 0) && priv->sph;
4276
+ for (chan = 0; chan < priv->plat->rx_queues_to_use; chan++)
4277
+ stmmac_enable_sph(priv, priv->ioaddr, sph_en, chan);
37094278
37104279 return 0;
37114280 }
....@@ -3799,6 +4368,7 @@
37994368 */
38004369 static int stmmac_ioctl(struct net_device *dev, struct ifreq *rq, int cmd)
38014370 {
4371
+ struct stmmac_priv *priv = netdev_priv (dev);
38024372 int ret = -EOPNOTSUPP;
38034373
38044374 if (!netif_running(dev))
....@@ -3808,18 +4378,14 @@
38084378 case SIOCGMIIPHY:
38094379 case SIOCGMIIREG:
38104380 case SIOCSMIIREG:
3811
- if (!dev->phydev)
3812
- return -EINVAL;
3813
- ret = phy_mii_ioctl(dev->phydev, rq, cmd);
4381
+ ret = phylink_mii_ioctl(priv->phylink, rq, cmd);
38144382 break;
3815
-#ifdef CONFIG_STMMAC_PTP
38164383 case SIOCSHWTSTAMP:
38174384 ret = stmmac_hwtstamp_set(dev, rq);
38184385 break;
38194386 case SIOCGHWTSTAMP:
38204387 ret = stmmac_hwtstamp_get(dev, rq);
38214388 break;
3822
-#endif
38234389 default:
38244390 break;
38254391 }
....@@ -3833,12 +4399,17 @@
38334399 struct stmmac_priv *priv = cb_priv;
38344400 int ret = -EOPNOTSUPP;
38354401
4402
+ if (!tc_cls_can_offload_and_chain0(priv->dev, type_data))
4403
+ return ret;
4404
+
38364405 stmmac_disable_all_queues(priv);
38374406
38384407 switch (type) {
38394408 case TC_SETUP_CLSU32:
3840
- if (tc_cls_can_offload_and_chain0(priv->dev, type_data))
3841
- ret = stmmac_tc_setup_cls_u32(priv, priv, type_data);
4409
+ ret = stmmac_tc_setup_cls_u32(priv, priv, type_data);
4410
+ break;
4411
+ case TC_SETUP_CLSFLOWER:
4412
+ ret = stmmac_tc_setup_cls(priv, priv, type_data);
38424413 break;
38434414 default:
38444415 break;
....@@ -3848,23 +4419,7 @@
38484419 return ret;
38494420 }
38504421
3851
-static int stmmac_setup_tc_block(struct stmmac_priv *priv,
3852
- struct tc_block_offload *f)
3853
-{
3854
- if (f->binder_type != TCF_BLOCK_BINDER_TYPE_CLSACT_INGRESS)
3855
- return -EOPNOTSUPP;
3856
-
3857
- switch (f->command) {
3858
- case TC_BLOCK_BIND:
3859
- return tcf_block_cb_register(f->block, stmmac_setup_tc_block_cb,
3860
- priv, priv, f->extack);
3861
- case TC_BLOCK_UNBIND:
3862
- tcf_block_cb_unregister(f->block, stmmac_setup_tc_block_cb, priv);
3863
- return 0;
3864
- default:
3865
- return -EOPNOTSUPP;
3866
- }
3867
-}
4422
+static LIST_HEAD(stmmac_block_cb_list);
38684423
38694424 static int stmmac_setup_tc(struct net_device *ndev, enum tc_setup_type type,
38704425 void *type_data)
....@@ -3873,17 +4428,23 @@
38734428
38744429 switch (type) {
38754430 case TC_SETUP_BLOCK:
3876
- return stmmac_setup_tc_block(priv, type_data);
4431
+ return flow_block_cb_setup_simple(type_data,
4432
+ &stmmac_block_cb_list,
4433
+ stmmac_setup_tc_block_cb,
4434
+ priv, priv, true);
38774435 case TC_SETUP_QDISC_CBS:
38784436 return stmmac_tc_setup_cbs(priv, priv, type_data);
4437
+ case TC_SETUP_QDISC_TAPRIO:
4438
+ return stmmac_tc_setup_taprio(priv, priv, type_data);
4439
+ case TC_SETUP_QDISC_ETF:
4440
+ return stmmac_tc_setup_etf(priv, priv, type_data);
38794441 default:
38804442 return -EOPNOTSUPP;
38814443 }
38824444 }
38834445
38844446 static u16 stmmac_select_queue(struct net_device *dev, struct sk_buff *skb,
3885
- struct net_device *sb_dev,
3886
- select_queue_fallback_t fallback)
4447
+ struct net_device *sb_dev)
38874448 {
38884449 int gso = skb_shinfo(skb)->gso_type;
38894450
....@@ -3897,7 +4458,7 @@
38974458 return 0;
38984459 }
38994460
3900
- return fallback(dev, skb, NULL) % dev->real_num_tx_queues;
4461
+ return netdev_pick_tx(dev, skb, NULL) % dev->real_num_tx_queues;
39014462 }
39024463
39034464 static int stmmac_set_mac_address(struct net_device *ndev, void *addr)
....@@ -3905,11 +4466,20 @@
39054466 struct stmmac_priv *priv = netdev_priv(ndev);
39064467 int ret = 0;
39074468
4469
+ ret = pm_runtime_get_sync(priv->device);
4470
+ if (ret < 0) {
4471
+ pm_runtime_put_noidle(priv->device);
4472
+ return ret;
4473
+ }
4474
+
39084475 ret = eth_mac_addr(ndev, addr);
39094476 if (ret)
3910
- return ret;
4477
+ goto set_mac_error;
39114478
39124479 stmmac_set_umac_addr(priv, priv->hw, ndev->dev_addr, 0);
4480
+
4481
+set_mac_error:
4482
+ pm_runtime_put(priv->device);
39134483
39144484 return ret;
39154485 }
....@@ -3918,24 +4488,27 @@
39184488 static struct dentry *stmmac_fs_dir;
39194489
39204490 static void sysfs_display_ring(void *head, int size, int extend_desc,
3921
- struct seq_file *seq)
4491
+ struct seq_file *seq, dma_addr_t dma_phy_addr)
39224492 {
39234493 int i;
39244494 struct dma_extended_desc *ep = (struct dma_extended_desc *)head;
39254495 struct dma_desc *p = (struct dma_desc *)head;
4496
+ dma_addr_t dma_addr;
39264497
39274498 for (i = 0; i < size; i++) {
39284499 if (extend_desc) {
3929
- seq_printf(seq, "%d [0x%x]: 0x%x 0x%x 0x%x 0x%x\n",
3930
- i, (unsigned int)virt_to_phys(ep),
4500
+ dma_addr = dma_phy_addr + i * sizeof(*ep);
4501
+ seq_printf(seq, "%d [%pad]: 0x%x 0x%x 0x%x 0x%x\n",
4502
+ i, &dma_addr,
39314503 le32_to_cpu(ep->basic.des0),
39324504 le32_to_cpu(ep->basic.des1),
39334505 le32_to_cpu(ep->basic.des2),
39344506 le32_to_cpu(ep->basic.des3));
39354507 ep++;
39364508 } else {
3937
- seq_printf(seq, "%d [0x%x]: 0x%x 0x%x 0x%x 0x%x\n",
3938
- i, (unsigned int)virt_to_phys(p),
4509
+ dma_addr = dma_phy_addr + i * sizeof(*p);
4510
+ seq_printf(seq, "%d [%pad]: 0x%x 0x%x 0x%x 0x%x\n",
4511
+ i, &dma_addr,
39394512 le32_to_cpu(p->des0), le32_to_cpu(p->des1),
39404513 le32_to_cpu(p->des2), le32_to_cpu(p->des3));
39414514 p++;
....@@ -3944,7 +4517,7 @@
39444517 }
39454518 }
39464519
3947
-static int stmmac_sysfs_ring_read(struct seq_file *seq, void *v)
4520
+static int stmmac_rings_status_show(struct seq_file *seq, void *v)
39484521 {
39494522 struct net_device *dev = seq->private;
39504523 struct stmmac_priv *priv = netdev_priv(dev);
....@@ -3963,11 +4536,11 @@
39634536 if (priv->extend_desc) {
39644537 seq_printf(seq, "Extended descriptor ring:\n");
39654538 sysfs_display_ring((void *)rx_q->dma_erx,
3966
- DMA_RX_SIZE, 1, seq);
4539
+ priv->dma_rx_size, 1, seq, rx_q->dma_rx_phy);
39674540 } else {
39684541 seq_printf(seq, "Descriptor ring:\n");
39694542 sysfs_display_ring((void *)rx_q->dma_rx,
3970
- DMA_RX_SIZE, 0, seq);
4543
+ priv->dma_rx_size, 0, seq, rx_q->dma_rx_phy);
39714544 }
39724545 }
39734546
....@@ -3979,33 +4552,19 @@
39794552 if (priv->extend_desc) {
39804553 seq_printf(seq, "Extended descriptor ring:\n");
39814554 sysfs_display_ring((void *)tx_q->dma_etx,
3982
- DMA_TX_SIZE, 1, seq);
3983
- } else {
4555
+ priv->dma_tx_size, 1, seq, tx_q->dma_tx_phy);
4556
+ } else if (!(tx_q->tbs & STMMAC_TBS_AVAIL)) {
39844557 seq_printf(seq, "Descriptor ring:\n");
39854558 sysfs_display_ring((void *)tx_q->dma_tx,
3986
- DMA_TX_SIZE, 0, seq);
4559
+ priv->dma_tx_size, 0, seq, tx_q->dma_tx_phy);
39874560 }
39884561 }
39894562
39904563 return 0;
39914564 }
4565
+DEFINE_SHOW_ATTRIBUTE(stmmac_rings_status);
39924566
3993
-static int stmmac_sysfs_ring_open(struct inode *inode, struct file *file)
3994
-{
3995
- return single_open(file, stmmac_sysfs_ring_read, inode->i_private);
3996
-}
3997
-
3998
-/* Debugfs files, should appear in /sys/kernel/debug/stmmaceth/eth0 */
3999
-
4000
-static const struct file_operations stmmac_rings_status_fops = {
4001
- .owner = THIS_MODULE,
4002
- .open = stmmac_sysfs_ring_open,
4003
- .read = seq_read,
4004
- .llseek = seq_lseek,
4005
- .release = single_release,
4006
-};
4007
-
4008
-static int stmmac_sysfs_dma_cap_read(struct seq_file *seq, void *v)
4567
+static int stmmac_dma_cap_show(struct seq_file *seq, void *v)
40094568 {
40104569 struct net_device *dev = seq->private;
40114570 struct stmmac_priv *priv = netdev_priv(dev);
....@@ -4063,64 +4622,94 @@
40634622 priv->dma_cap.number_rx_channel);
40644623 seq_printf(seq, "\tNumber of Additional TX channel: %d\n",
40654624 priv->dma_cap.number_tx_channel);
4625
+ seq_printf(seq, "\tNumber of Additional RX queues: %d\n",
4626
+ priv->dma_cap.number_rx_queues);
4627
+ seq_printf(seq, "\tNumber of Additional TX queues: %d\n",
4628
+ priv->dma_cap.number_tx_queues);
40664629 seq_printf(seq, "\tEnhanced descriptors: %s\n",
40674630 (priv->dma_cap.enh_desc) ? "Y" : "N");
4068
-
4631
+ seq_printf(seq, "\tTX Fifo Size: %d\n", priv->dma_cap.tx_fifo_size);
4632
+ seq_printf(seq, "\tRX Fifo Size: %d\n", priv->dma_cap.rx_fifo_size);
4633
+ seq_printf(seq, "\tHash Table Size: %d\n", priv->dma_cap.hash_tb_sz);
4634
+ seq_printf(seq, "\tTSO: %s\n", priv->dma_cap.tsoen ? "Y" : "N");
4635
+ seq_printf(seq, "\tNumber of PPS Outputs: %d\n",
4636
+ priv->dma_cap.pps_out_num);
4637
+ seq_printf(seq, "\tSafety Features: %s\n",
4638
+ priv->dma_cap.asp ? "Y" : "N");
4639
+ seq_printf(seq, "\tFlexible RX Parser: %s\n",
4640
+ priv->dma_cap.frpsel ? "Y" : "N");
4641
+ seq_printf(seq, "\tEnhanced Addressing: %d\n",
4642
+ priv->dma_cap.addr64);
4643
+ seq_printf(seq, "\tReceive Side Scaling: %s\n",
4644
+ priv->dma_cap.rssen ? "Y" : "N");
4645
+ seq_printf(seq, "\tVLAN Hash Filtering: %s\n",
4646
+ priv->dma_cap.vlhash ? "Y" : "N");
4647
+ seq_printf(seq, "\tSplit Header: %s\n",
4648
+ priv->dma_cap.sphen ? "Y" : "N");
4649
+ seq_printf(seq, "\tVLAN TX Insertion: %s\n",
4650
+ priv->dma_cap.vlins ? "Y" : "N");
4651
+ seq_printf(seq, "\tDouble VLAN: %s\n",
4652
+ priv->dma_cap.dvlan ? "Y" : "N");
4653
+ seq_printf(seq, "\tNumber of L3/L4 Filters: %d\n",
4654
+ priv->dma_cap.l3l4fnum);
4655
+ seq_printf(seq, "\tARP Offloading: %s\n",
4656
+ priv->dma_cap.arpoffsel ? "Y" : "N");
4657
+ seq_printf(seq, "\tEnhancements to Scheduled Traffic (EST): %s\n",
4658
+ priv->dma_cap.estsel ? "Y" : "N");
4659
+ seq_printf(seq, "\tFrame Preemption (FPE): %s\n",
4660
+ priv->dma_cap.fpesel ? "Y" : "N");
4661
+ seq_printf(seq, "\tTime-Based Scheduling (TBS): %s\n",
4662
+ priv->dma_cap.tbssel ? "Y" : "N");
40694663 return 0;
40704664 }
4665
+DEFINE_SHOW_ATTRIBUTE(stmmac_dma_cap);
40714666
4072
-static int stmmac_sysfs_dma_cap_open(struct inode *inode, struct file *file)
4667
+/* Use network device events to rename debugfs file entries.
4668
+ */
4669
+static int stmmac_device_event(struct notifier_block *unused,
4670
+ unsigned long event, void *ptr)
40734671 {
4074
- return single_open(file, stmmac_sysfs_dma_cap_read, inode->i_private);
4672
+ struct net_device *dev = netdev_notifier_info_to_dev(ptr);
4673
+ struct stmmac_priv *priv = netdev_priv(dev);
4674
+
4675
+ if (dev->netdev_ops != &stmmac_netdev_ops)
4676
+ goto done;
4677
+
4678
+ switch (event) {
4679
+ case NETDEV_CHANGENAME:
4680
+ if (priv->dbgfs_dir)
4681
+ priv->dbgfs_dir = debugfs_rename(stmmac_fs_dir,
4682
+ priv->dbgfs_dir,
4683
+ stmmac_fs_dir,
4684
+ dev->name);
4685
+ break;
4686
+ }
4687
+done:
4688
+ return NOTIFY_DONE;
40754689 }
40764690
4077
-static const struct file_operations stmmac_dma_cap_fops = {
4078
- .owner = THIS_MODULE,
4079
- .open = stmmac_sysfs_dma_cap_open,
4080
- .read = seq_read,
4081
- .llseek = seq_lseek,
4082
- .release = single_release,
4691
+static struct notifier_block stmmac_notifier = {
4692
+ .notifier_call = stmmac_device_event,
40834693 };
40844694
4085
-static int stmmac_init_fs(struct net_device *dev)
4695
+static void stmmac_init_fs(struct net_device *dev)
40864696 {
40874697 struct stmmac_priv *priv = netdev_priv(dev);
4698
+
4699
+ rtnl_lock();
40884700
40894701 /* Create per netdev entries */
40904702 priv->dbgfs_dir = debugfs_create_dir(dev->name, stmmac_fs_dir);
40914703
4092
- if (!priv->dbgfs_dir || IS_ERR(priv->dbgfs_dir)) {
4093
- netdev_err(priv->dev, "ERROR failed to create debugfs directory\n");
4094
-
4095
- return -ENOMEM;
4096
- }
4097
-
40984704 /* Entry to report DMA RX/TX rings */
4099
- priv->dbgfs_rings_status =
4100
- debugfs_create_file("descriptors_status", 0444,
4101
- priv->dbgfs_dir, dev,
4102
- &stmmac_rings_status_fops);
4103
-
4104
- if (!priv->dbgfs_rings_status || IS_ERR(priv->dbgfs_rings_status)) {
4105
- netdev_err(priv->dev, "ERROR creating stmmac ring debugfs file\n");
4106
- debugfs_remove_recursive(priv->dbgfs_dir);
4107
-
4108
- return -ENOMEM;
4109
- }
4705
+ debugfs_create_file("descriptors_status", 0444, priv->dbgfs_dir, dev,
4706
+ &stmmac_rings_status_fops);
41104707
41114708 /* Entry to report the DMA HW features */
4112
- priv->dbgfs_dma_cap = debugfs_create_file("dma_cap", 0444,
4113
- priv->dbgfs_dir,
4114
- dev, &stmmac_dma_cap_fops);
4709
+ debugfs_create_file("dma_cap", 0444, priv->dbgfs_dir, dev,
4710
+ &stmmac_dma_cap_fops);
41154711
4116
- if (!priv->dbgfs_dma_cap || IS_ERR(priv->dbgfs_dma_cap)) {
4117
- netdev_err(priv->dev, "ERROR creating stmmac MMC debugfs file\n");
4118
- debugfs_remove_recursive(priv->dbgfs_dir);
4119
-
4120
- return -ENOMEM;
4121
- }
4122
-
4123
- return 0;
4712
+ rtnl_unlock();
41244713 }
41254714
41264715 static void stmmac_exit_fs(struct net_device *dev)
....@@ -4130,6 +4719,111 @@
41304719 debugfs_remove_recursive(priv->dbgfs_dir);
41314720 }
41324721 #endif /* CONFIG_DEBUG_FS */
4722
+
4723
+static u32 stmmac_vid_crc32_le(__le16 vid_le)
4724
+{
4725
+ unsigned char *data = (unsigned char *)&vid_le;
4726
+ unsigned char data_byte = 0;
4727
+ u32 crc = ~0x0;
4728
+ u32 temp = 0;
4729
+ int i, bits;
4730
+
4731
+ bits = get_bitmask_order(VLAN_VID_MASK);
4732
+ for (i = 0; i < bits; i++) {
4733
+ if ((i % 8) == 0)
4734
+ data_byte = data[i / 8];
4735
+
4736
+ temp = ((crc & 1) ^ data_byte) & 1;
4737
+ crc >>= 1;
4738
+ data_byte >>= 1;
4739
+
4740
+ if (temp)
4741
+ crc ^= 0xedb88320;
4742
+ }
4743
+
4744
+ return crc;
4745
+}
4746
+
4747
+static int stmmac_vlan_update(struct stmmac_priv *priv, bool is_double)
4748
+{
4749
+ u32 crc, hash = 0;
4750
+ __le16 pmatch = 0;
4751
+ int count = 0;
4752
+ u16 vid = 0;
4753
+
4754
+ for_each_set_bit(vid, priv->active_vlans, VLAN_N_VID) {
4755
+ __le16 vid_le = cpu_to_le16(vid);
4756
+ crc = bitrev32(~stmmac_vid_crc32_le(vid_le)) >> 28;
4757
+ hash |= (1 << crc);
4758
+ count++;
4759
+ }
4760
+
4761
+ if (!priv->dma_cap.vlhash) {
4762
+ if (count > 2) /* VID = 0 always passes filter */
4763
+ return -EOPNOTSUPP;
4764
+
4765
+ pmatch = cpu_to_le16(vid);
4766
+ hash = 0;
4767
+ }
4768
+
4769
+ return stmmac_update_vlan_hash(priv, priv->hw, hash, pmatch, is_double);
4770
+}
4771
+
4772
+static int stmmac_vlan_rx_add_vid(struct net_device *ndev, __be16 proto, u16 vid)
4773
+{
4774
+ struct stmmac_priv *priv = netdev_priv(ndev);
4775
+ bool is_double = false;
4776
+ int ret;
4777
+
4778
+ if (be16_to_cpu(proto) == ETH_P_8021AD)
4779
+ is_double = true;
4780
+
4781
+ set_bit(vid, priv->active_vlans);
4782
+ ret = stmmac_vlan_update(priv, is_double);
4783
+ if (ret) {
4784
+ clear_bit(vid, priv->active_vlans);
4785
+ return ret;
4786
+ }
4787
+
4788
+ if (priv->hw->num_vlan) {
4789
+ ret = stmmac_add_hw_vlan_rx_fltr(priv, ndev, priv->hw, proto, vid);
4790
+ if (ret)
4791
+ return ret;
4792
+ }
4793
+
4794
+ return 0;
4795
+}
4796
+
4797
+static int stmmac_vlan_rx_kill_vid(struct net_device *ndev, __be16 proto, u16 vid)
4798
+{
4799
+ struct stmmac_priv *priv = netdev_priv(ndev);
4800
+ bool is_double = false;
4801
+ int ret;
4802
+
4803
+ ret = pm_runtime_get_sync(priv->device);
4804
+ if (ret < 0) {
4805
+ pm_runtime_put_noidle(priv->device);
4806
+ return ret;
4807
+ }
4808
+
4809
+ if (be16_to_cpu(proto) == ETH_P_8021AD)
4810
+ is_double = true;
4811
+
4812
+ clear_bit(vid, priv->active_vlans);
4813
+
4814
+ if (priv->hw->num_vlan) {
4815
+ ret = stmmac_del_hw_vlan_rx_fltr(priv, ndev, priv->hw, proto, vid);
4816
+ if (ret)
4817
+ goto del_vlan_error;
4818
+ }
4819
+
4820
+ ret = stmmac_vlan_update(priv, is_double);
4821
+
4822
+del_vlan_error:
4823
+ pm_runtime_put(priv->device);
4824
+
4825
+ return ret;
4826
+}
41334827
41344828 static const struct net_device_ops stmmac_netdev_ops = {
41354829 .ndo_open = stmmac_open,
....@@ -4147,6 +4841,8 @@
41474841 .ndo_poll_controller = stmmac_poll_controller,
41484842 #endif
41494843 .ndo_set_mac_address = stmmac_set_mac_address,
4844
+ .ndo_vlan_rx_add_vid = stmmac_vlan_rx_add_vid,
4845
+ .ndo_vlan_rx_kill_vid = stmmac_vlan_rx_kill_vid,
41504846 };
41514847
41524848 static void stmmac_reset_subtask(struct stmmac_priv *priv)
....@@ -4165,7 +4861,7 @@
41654861
41664862 set_bit(STMMAC_DOWN, &priv->state);
41674863 dev_close(priv->dev);
4168
- dev_open(priv->dev);
4864
+ dev_open(priv->dev, NULL);
41694865 clear_bit(STMMAC_DOWN, &priv->state);
41704866 clear_bit(STMMAC_RESETING, &priv->state);
41714867 rtnl_unlock();
....@@ -4215,6 +4911,12 @@
42154911 priv->plat->enh_desc = priv->dma_cap.enh_desc;
42164912 priv->plat->pmt = priv->dma_cap.pmt_remote_wake_up;
42174913 priv->hw->pmt = priv->plat->pmt;
4914
+ if (priv->dma_cap.hash_tb_sz) {
4915
+ priv->hw->multicast_filter_bins =
4916
+ (BIT(priv->dma_cap.hash_tb_sz) << 5);
4917
+ priv->hw->mcast_bits_log2 =
4918
+ ilog2(priv->hw->multicast_filter_bins);
4919
+ }
42184920
42194921 /* TXCOE doesn't work in thresh DMA mode */
42204922 if (priv->plat->force_thresh_dma_mode)
....@@ -4251,6 +4953,9 @@
42514953 if (priv->dma_cap.tsoen)
42524954 dev_info(priv->device, "TSO supported\n");
42534955
4956
+ priv->hw->vlan_fail_q_en = priv->plat->vlan_fail_q_en;
4957
+ priv->hw->vlan_fail_q = priv->plat->vlan_fail_q;
4958
+
42544959 /* Run HW quirks, if any */
42554960 if (priv->hwif_quirks) {
42564961 ret = priv->hwif_quirks(priv);
....@@ -4273,6 +4978,92 @@
42734978 return 0;
42744979 }
42754980
4981
+static void stmmac_napi_add(struct net_device *dev)
4982
+{
4983
+ struct stmmac_priv *priv = netdev_priv(dev);
4984
+ u32 queue, maxq;
4985
+
4986
+ maxq = max(priv->plat->rx_queues_to_use, priv->plat->tx_queues_to_use);
4987
+
4988
+ for (queue = 0; queue < maxq; queue++) {
4989
+ struct stmmac_channel *ch = &priv->channel[queue];
4990
+ int rx_budget = ((priv->plat->dma_rx_size < NAPI_POLL_WEIGHT) &&
4991
+ (priv->plat->dma_rx_size > 0)) ?
4992
+ priv->plat->dma_rx_size : NAPI_POLL_WEIGHT;
4993
+ int tx_budget = ((priv->plat->dma_tx_size < NAPI_POLL_WEIGHT) &&
4994
+ (priv->plat->dma_tx_size > 0)) ?
4995
+ priv->plat->dma_tx_size : NAPI_POLL_WEIGHT;
4996
+
4997
+ ch->priv_data = priv;
4998
+ ch->index = queue;
4999
+ spin_lock_init(&ch->lock);
5000
+
5001
+ if (queue < priv->plat->rx_queues_to_use) {
5002
+ netif_napi_add(dev, &ch->rx_napi, stmmac_napi_poll_rx,
5003
+ rx_budget);
5004
+ }
5005
+ if (queue < priv->plat->tx_queues_to_use) {
5006
+ netif_tx_napi_add(dev, &ch->tx_napi,
5007
+ stmmac_napi_poll_tx, tx_budget);
5008
+ }
5009
+ }
5010
+}
5011
+
5012
+static void stmmac_napi_del(struct net_device *dev)
5013
+{
5014
+ struct stmmac_priv *priv = netdev_priv(dev);
5015
+ u32 queue, maxq;
5016
+
5017
+ maxq = max(priv->plat->rx_queues_to_use, priv->plat->tx_queues_to_use);
5018
+
5019
+ for (queue = 0; queue < maxq; queue++) {
5020
+ struct stmmac_channel *ch = &priv->channel[queue];
5021
+
5022
+ if (queue < priv->plat->rx_queues_to_use)
5023
+ netif_napi_del(&ch->rx_napi);
5024
+ if (queue < priv->plat->tx_queues_to_use)
5025
+ netif_napi_del(&ch->tx_napi);
5026
+ }
5027
+}
5028
+
5029
+int stmmac_reinit_queues(struct net_device *dev, u32 rx_cnt, u32 tx_cnt)
5030
+{
5031
+ struct stmmac_priv *priv = netdev_priv(dev);
5032
+ int ret = 0;
5033
+
5034
+ if (netif_running(dev))
5035
+ stmmac_release(dev);
5036
+
5037
+ stmmac_napi_del(dev);
5038
+
5039
+ priv->plat->rx_queues_to_use = rx_cnt;
5040
+ priv->plat->tx_queues_to_use = tx_cnt;
5041
+
5042
+ stmmac_napi_add(dev);
5043
+
5044
+ if (netif_running(dev))
5045
+ ret = stmmac_open(dev);
5046
+
5047
+ return ret;
5048
+}
5049
+
5050
+int stmmac_reinit_ringparam(struct net_device *dev, u32 rx_size, u32 tx_size)
5051
+{
5052
+ struct stmmac_priv *priv = netdev_priv(dev);
5053
+ int ret = 0;
5054
+
5055
+ if (netif_running(dev))
5056
+ stmmac_release(dev);
5057
+
5058
+ priv->dma_rx_size = rx_size;
5059
+ priv->dma_tx_size = tx_size;
5060
+
5061
+ if (netif_running(dev))
5062
+ ret = stmmac_open(dev);
5063
+
5064
+ return ret;
5065
+}
5066
+
42765067 /**
42775068 * stmmac_dvr_probe
42785069 * @device: device pointer
....@@ -4289,12 +5080,11 @@
42895080 {
42905081 struct net_device *ndev = NULL;
42915082 struct stmmac_priv *priv;
4292
- u32 queue, maxq;
4293
- int ret = 0;
5083
+ u32 rxq;
5084
+ int i, ret = 0;
42945085
4295
- ndev = alloc_etherdev_mqs(sizeof(struct stmmac_priv),
4296
- MTL_MAX_TX_QUEUES,
4297
- MTL_MAX_RX_QUEUES);
5086
+ ndev = devm_alloc_etherdev_mqs(device, sizeof(struct stmmac_priv),
5087
+ MTL_MAX_TX_QUEUES, MTL_MAX_RX_QUEUES);
42985088 if (!ndev)
42995089 return -ENOMEM;
43005090
....@@ -4314,7 +5104,7 @@
43145104 priv->wol_irq = res->wol_irq;
43155105 priv->lpi_irq = res->lpi_irq;
43165106
4317
- if (res->mac)
5107
+ if (!IS_ERR_OR_NULL(res->mac))
43185108 memcpy(priv->dev->dev_addr, res->mac, ETH_ALEN);
43195109
43205110 dev_set_drvdata(device, priv->dev);
....@@ -4326,8 +5116,7 @@
43265116 priv->wq = create_singlethread_workqueue("stmmac_wq");
43275117 if (!priv->wq) {
43285118 dev_err(priv->device, "failed to create workqueue\n");
4329
- ret = -ENOMEM;
4330
- goto error_wq;
5119
+ return -ENOMEM;
43315120 }
43325121
43335122 INIT_WORK(&priv->service_task, stmmac_service_task);
....@@ -4355,10 +5144,6 @@
43555144
43565145 stmmac_check_ether_addr(priv);
43575146
4358
- /* Configure real RX and TX queues */
4359
- netif_set_real_num_rx_queues(ndev, priv->plat->rx_queues_to_use);
4360
- netif_set_real_num_tx_queues(ndev, priv->plat->tx_queues_to_use);
4361
-
43625147 ndev->netdev_ops = &stmmac_netdev_ops;
43635148
43645149 ndev->hw_features = NETIF_F_SG | NETIF_F_IP_CSUM | NETIF_F_IPV6_CSUM |
....@@ -4376,20 +5161,79 @@
43765161 priv->tso = true;
43775162 dev_info(priv->device, "TSO feature enabled\n");
43785163 }
5164
+
5165
+ if (priv->dma_cap.sphen && !priv->plat->sph_disable) {
5166
+ ndev->hw_features |= NETIF_F_GRO;
5167
+ if (!priv->plat->sph_disable) {
5168
+ priv->sph = true;
5169
+ dev_info(priv->device, "SPH feature enabled\n");
5170
+ }
5171
+ }
5172
+
5173
+ /* The current IP register MAC_HW_Feature1[ADDR64] only define
5174
+ * 32/40/64 bit width, but some SOC support others like i.MX8MP
5175
+ * support 34 bits but it map to 40 bits width in MAC_HW_Feature1[ADDR64].
5176
+ * So overwrite dma_cap.addr64 according to HW real design.
5177
+ */
5178
+ if (priv->plat->addr64)
5179
+ priv->dma_cap.addr64 = priv->plat->addr64;
5180
+
5181
+ if (priv->dma_cap.addr64) {
5182
+ ret = dma_set_mask_and_coherent(device,
5183
+ DMA_BIT_MASK(priv->dma_cap.addr64));
5184
+ if (!ret) {
5185
+ dev_info(priv->device, "Using %d bits DMA width\n",
5186
+ priv->dma_cap.addr64);
5187
+
5188
+ /*
5189
+ * If more than 32 bits can be addressed, make sure to
5190
+ * enable enhanced addressing mode.
5191
+ */
5192
+ if (IS_ENABLED(CONFIG_ARCH_DMA_ADDR_T_64BIT))
5193
+ priv->plat->dma_cfg->eame = true;
5194
+ } else {
5195
+ ret = dma_set_mask_and_coherent(device, DMA_BIT_MASK(32));
5196
+ if (ret) {
5197
+ dev_err(priv->device, "Failed to set DMA Mask\n");
5198
+ goto error_hw_init;
5199
+ }
5200
+
5201
+ priv->dma_cap.addr64 = 32;
5202
+ }
5203
+ }
5204
+
43795205 ndev->features |= ndev->hw_features | NETIF_F_HIGHDMA;
43805206 ndev->watchdog_timeo = msecs_to_jiffies(watchdog);
43815207 #ifdef STMMAC_VLAN_TAG_USED
43825208 /* Both mac100 and gmac support receive VLAN tag detection */
43835209 ndev->features |= NETIF_F_HW_VLAN_CTAG_RX | NETIF_F_HW_VLAN_STAG_RX;
5210
+ if (priv->dma_cap.vlhash) {
5211
+ ndev->features |= NETIF_F_HW_VLAN_CTAG_FILTER;
5212
+ ndev->features |= NETIF_F_HW_VLAN_STAG_FILTER;
5213
+ }
5214
+ if (priv->dma_cap.vlins) {
5215
+ ndev->features |= NETIF_F_HW_VLAN_CTAG_TX;
5216
+ if (priv->dma_cap.dvlan)
5217
+ ndev->features |= NETIF_F_HW_VLAN_STAG_TX;
5218
+ }
43845219 #endif
43855220 priv->msg_enable = netif_msg_init(debug, default_msg_level);
43865221
5222
+ /* Initialize RSS */
5223
+ rxq = priv->plat->rx_queues_to_use;
5224
+ netdev_rss_key_fill(priv->rss.key, sizeof(priv->rss.key));
5225
+ for (i = 0; i < ARRAY_SIZE(priv->rss.table); i++)
5226
+ priv->rss.table[i] = ethtool_rxfh_indir_default(i, rxq);
5227
+
5228
+ if (priv->dma_cap.rssen && priv->plat->rss_en)
5229
+ ndev->features |= NETIF_F_RXHASH;
5230
+
43875231 /* MTU range: 46 - hw-specific max */
43885232 ndev->min_mtu = ETH_ZLEN - ETH_HLEN;
4389
- if ((priv->plat->enh_desc) || (priv->synopsys_id >= DWMAC_CORE_4_00))
4390
- ndev->max_mtu = JUMBO_LEN;
4391
- else if (priv->plat->has_xgmac)
5233
+ if (priv->plat->has_xgmac)
43925234 ndev->max_mtu = XGMAC_JUMBO_LEN;
5235
+ else if ((priv->plat->enh_desc) || (priv->synopsys_id >= DWMAC_CORE_4_00))
5236
+ ndev->max_mtu = JUMBO_LEN;
43935237 else
43945238 ndev->max_mtu = SKB_MAX_HEAD(NET_SKB_PAD + NET_IP_ALIGN);
43955239 /* Will not overwrite ndev->max_mtu if plat->maxmtu > ndev->max_mtu
....@@ -4407,22 +5251,7 @@
44075251 priv->flow_ctrl = FLOW_AUTO; /* RX/TX pause on */
44085252
44095253 /* Setup channels NAPI */
4410
- maxq = max(priv->plat->rx_queues_to_use, priv->plat->tx_queues_to_use);
4411
-
4412
- for (queue = 0; queue < maxq; queue++) {
4413
- struct stmmac_channel *ch = &priv->channel[queue];
4414
-
4415
- ch->priv_data = priv;
4416
- ch->index = queue;
4417
-
4418
- if (queue < priv->plat->rx_queues_to_use)
4419
- ch->has_rx = true;
4420
- if (queue < priv->plat->tx_queues_to_use)
4421
- ch->has_tx = true;
4422
-
4423
- netif_napi_add(ndev, &ch->napi, stmmac_napi_poll,
4424
- NAPI_POLL_WEIGHT);
4425
- }
5254
+ stmmac_napi_add(ndev);
44265255
44275256 mutex_init(&priv->lock);
44285257
....@@ -4432,15 +5261,18 @@
44325261 * set the MDC clock dynamically according to the csr actual
44335262 * clock input.
44345263 */
4435
- if (!priv->plat->clk_csr)
4436
- stmmac_clk_csr_set(priv);
4437
- else
5264
+ if (priv->plat->clk_csr >= 0)
44385265 priv->clk_csr = priv->plat->clk_csr;
5266
+ else
5267
+ stmmac_clk_csr_set(priv);
44395268
44405269 stmmac_check_pcs_mode(priv);
44415270
4442
- if (priv->hw->pcs != STMMAC_PCS_RGMII &&
4443
- priv->hw->pcs != STMMAC_PCS_TBI &&
5271
+ pm_runtime_get_noresume(device);
5272
+ pm_runtime_set_active(device);
5273
+ pm_runtime_enable(device);
5274
+
5275
+ if (priv->hw->pcs != STMMAC_PCS_TBI &&
44445276 priv->hw->pcs != STMMAC_PCS_RTBI) {
44455277 /* MDIO bus Registration */
44465278 ret = stmmac_mdio_register(ndev);
....@@ -4452,6 +5284,12 @@
44525284 }
44535285 }
44545286
5287
+ ret = stmmac_phy_setup(priv);
5288
+ if (ret) {
5289
+ netdev_err(ndev, "failed to setup phy (%d)\n", ret);
5290
+ goto error_phy_setup;
5291
+ }
5292
+
44555293 ret = register_netdev(ndev);
44565294 if (ret) {
44575295 dev_err(priv->device, "%s: ERROR %i registering the device\n",
....@@ -4460,29 +5298,29 @@
44605298 }
44615299
44625300 #ifdef CONFIG_DEBUG_FS
4463
- ret = stmmac_init_fs(ndev);
4464
- if (ret < 0)
4465
- netdev_warn(priv->dev, "%s: failed debugFS registration\n",
4466
- __func__);
5301
+ stmmac_init_fs(ndev);
44675302 #endif
5303
+
5304
+ /* Let pm_runtime_put() disable the clocks.
5305
+ * If CONFIG_PM is not enabled, the clocks will stay powered.
5306
+ */
5307
+ pm_runtime_put(device);
5308
+
5309
+ //add
5310
+ phy_register_fixup_for_uid(RTL_8211F_PHY_ID, RTL_8211F_PHY_ID_MASK, rtl8211F_led_control);
44685311
44695312 return ret;
44705313
44715314 error_netdev_register:
4472
- if (priv->hw->pcs != STMMAC_PCS_RGMII &&
4473
- priv->hw->pcs != STMMAC_PCS_TBI &&
5315
+ phylink_destroy(priv->phylink);
5316
+error_phy_setup:
5317
+ if (priv->hw->pcs != STMMAC_PCS_TBI &&
44745318 priv->hw->pcs != STMMAC_PCS_RTBI)
44755319 stmmac_mdio_unregister(ndev);
44765320 error_mdio_register:
4477
- for (queue = 0; queue < maxq; queue++) {
4478
- struct stmmac_channel *ch = &priv->channel[queue];
4479
-
4480
- netif_napi_del(&ch->napi);
4481
- }
5321
+ stmmac_napi_del(ndev);
44825322 error_hw_init:
44835323 destroy_workqueue(priv->wq);
4484
-error_wq:
4485
- free_netdev(ndev);
44865324
44875325 return ret;
44885326 }
....@@ -4501,25 +5339,30 @@
45015339
45025340 netdev_info(priv->dev, "%s: removing driver", __func__);
45035341
4504
-#ifdef CONFIG_DEBUG_FS
4505
- stmmac_exit_fs(ndev);
4506
-#endif
45075342 stmmac_stop_all_dma(priv);
4508
-
45095343 stmmac_mac_set(priv, priv->ioaddr, false);
45105344 netif_carrier_off(ndev);
45115345 unregister_netdev(ndev);
5346
+
5347
+ /* Serdes power down needs to happen after VLAN filter
5348
+ * is deleted that is triggered by unregister_netdev().
5349
+ */
5350
+ if (priv->plat->serdes_powerdown)
5351
+ priv->plat->serdes_powerdown(ndev, priv->plat->bsp_priv);
5352
+
5353
+#ifdef CONFIG_DEBUG_FS
5354
+ stmmac_exit_fs(ndev);
5355
+#endif
5356
+ phylink_destroy(priv->phylink);
45125357 if (priv->plat->stmmac_rst)
45135358 reset_control_assert(priv->plat->stmmac_rst);
4514
- clk_disable_unprepare(priv->plat->pclk);
4515
- clk_disable_unprepare(priv->plat->stmmac_clk);
4516
- if (priv->hw->pcs != STMMAC_PCS_RGMII &&
4517
- priv->hw->pcs != STMMAC_PCS_TBI &&
5359
+ pm_runtime_put(dev);
5360
+ pm_runtime_disable(dev);
5361
+ if (priv->hw->pcs != STMMAC_PCS_TBI &&
45185362 priv->hw->pcs != STMMAC_PCS_RTBI)
45195363 stmmac_mdio_unregister(ndev);
45205364 destroy_workqueue(priv->wq);
45215365 mutex_destroy(&priv->lock);
4522
- free_netdev(ndev);
45235366
45245367 return 0;
45255368 }
....@@ -4541,8 +5384,7 @@
45415384 if (!ndev || !netif_running(ndev))
45425385 return 0;
45435386
4544
- if (ndev->phydev)
4545
- phy_stop(ndev->phydev);
5387
+ phylink_mac_change(priv->phylink, false);
45465388
45475389 mutex_lock(&priv->lock);
45485390
....@@ -4561,34 +5403,38 @@
45615403 /* Stop TX/RX DMA */
45625404 stmmac_stop_all_dma(priv);
45635405
5406
+ if (priv->plat->serdes_powerdown)
5407
+ priv->plat->serdes_powerdown(ndev, priv->plat->bsp_priv);
5408
+
45645409 /* Enable Power down mode by programming the PMT regs */
4565
- if (device_may_wakeup(priv->device)) {
5410
+ if (device_may_wakeup(priv->device) && priv->plat->pmt) {
45665411 stmmac_pmt(priv, priv->hw, priv->wolopts);
45675412 priv->irq_wake = 1;
45685413 } else {
5414
+ mutex_unlock(&priv->lock);
5415
+ rtnl_lock();
5416
+ if (device_may_wakeup(priv->device))
5417
+ phylink_speed_down(priv->phylink, false);
45695418 if (priv->plat->integrated_phy_power)
45705419 priv->plat->integrated_phy_power(priv->plat->bsp_priv,
45715420 false);
5421
+ phylink_stop(priv->phylink);
5422
+ rtnl_unlock();
5423
+ mutex_lock(&priv->lock);
5424
+
45725425 stmmac_mac_set(priv, priv->ioaddr, false);
45735426 pinctrl_pm_select_sleep_state(priv->device);
4574
- /* Disable clock in case of PWM is off */
4575
- if (priv->plat->clk_ptp_ref && IS_ENABLED(CONFIG_STMMAC_PTP))
4576
- clk_disable_unprepare(priv->plat->clk_ptp_ref);
4577
- clk_disable_unprepare(priv->plat->pclk);
4578
- clk_disable_unprepare(priv->plat->stmmac_clk);
45795427 }
45805428 mutex_unlock(&priv->lock);
45815429
4582
- priv->oldlink = false;
45835430 priv->speed = SPEED_UNKNOWN;
4584
- priv->oldduplex = DUPLEX_UNKNOWN;
45855431 return 0;
45865432 }
45875433 EXPORT_SYMBOL_GPL(stmmac_suspend);
45885434
45895435 /**
45905436 * stmmac_reset_queues_param - reset queue parameters
4591
- * @dev: device pointer
5437
+ * @priv: device pointer
45925438 */
45935439 static void stmmac_reset_queues_param(struct stmmac_priv *priv)
45945440 {
....@@ -4624,6 +5470,7 @@
46245470 {
46255471 struct net_device *ndev = dev_get_drvdata(dev);
46265472 struct stmmac_priv *priv = netdev_priv(ndev);
5473
+ int ret;
46275474
46285475 if (!netif_running(ndev))
46295476 return 0;
....@@ -4634,18 +5481,13 @@
46345481 * this bit because it can generate problems while resuming
46355482 * from another devices (e.g. serial console).
46365483 */
4637
- if (device_may_wakeup(priv->device)) {
5484
+ if (device_may_wakeup(priv->device) && priv->plat->pmt) {
46385485 mutex_lock(&priv->lock);
46395486 stmmac_pmt(priv, priv->hw, 0);
46405487 mutex_unlock(&priv->lock);
46415488 priv->irq_wake = 0;
46425489 } else {
46435490 pinctrl_pm_select_default_state(priv->device);
4644
- /* enable the clk previously disabled */
4645
- clk_prepare_enable(priv->plat->stmmac_clk);
4646
- clk_prepare_enable(priv->plat->pclk);
4647
- if (priv->plat->clk_ptp_ref && IS_ENABLED(CONFIG_STMMAC_PTP))
4648
- clk_prepare_enable(priv->plat->clk_ptp_ref);
46495491 /* reset the phy so that it's ready */
46505492 if (priv->mii)
46515493 stmmac_mdio_reset(priv->mii);
....@@ -4654,6 +5496,23 @@
46545496 true);
46555497 }
46565498
5499
+ if (priv->plat->serdes_powerup) {
5500
+ ret = priv->plat->serdes_powerup(ndev,
5501
+ priv->plat->bsp_priv);
5502
+
5503
+ if (ret < 0)
5504
+ return ret;
5505
+ }
5506
+
5507
+ if (!device_may_wakeup(priv->device) || !priv->plat->pmt) {
5508
+ rtnl_lock();
5509
+ phylink_start(priv->phylink);
5510
+ /* We may have called phylink_speed_down before */
5511
+ phylink_speed_up(priv->phylink);
5512
+ rtnl_unlock();
5513
+ }
5514
+
5515
+ rtnl_lock();
46575516 mutex_lock(&priv->lock);
46585517
46595518 stmmac_reset_queues_param(priv);
....@@ -4661,18 +5520,26 @@
46615520 stmmac_free_tx_skbufs(priv);
46625521 stmmac_clear_descriptors(priv);
46635522
5523
+#if 1
5524
+ printk("ben -------resume add 2s delay time.\n");
5525
+ mdelay(2000);
5526
+
5527
+#endif
5528
+
46645529 stmmac_hw_setup(ndev, false);
4665
- stmmac_init_tx_coalesce(priv);
5530
+ stmmac_init_coalesce(priv);
46665531 stmmac_set_rx_mode(ndev);
5532
+
5533
+ stmmac_restore_hw_vlan_rx_fltr(priv, ndev, priv->hw);
46675534
46685535 stmmac_enable_all_queues(priv);
46695536
4670
- netif_device_attach(ndev);
4671
-
46725537 mutex_unlock(&priv->lock);
5538
+ rtnl_unlock();
46735539
4674
- if (ndev->phydev)
4675
- phy_start(ndev->phydev);
5540
+ phylink_mac_change(priv->phylink, true);
5541
+
5542
+ netif_device_attach(ndev);
46765543
46775544 return 0;
46785545 }
....@@ -4684,7 +5551,7 @@
46845551 char *opt;
46855552
46865553 if (!str || !*str)
4687
- return -EINVAL;
5554
+ return 1;
46885555 while ((opt = strsep(&str, ",")) != NULL) {
46895556 if (!strncmp(opt, "debug:", 6)) {
46905557 if (kstrtoint(opt + 6, 0, &debug))
....@@ -4715,11 +5582,11 @@
47155582 goto err;
47165583 }
47175584 }
4718
- return 0;
5585
+ return 1;
47195586
47205587 err:
47215588 pr_err("%s: ERROR broken module parameter conversion", __func__);
4722
- return -EINVAL;
5589
+ return 1;
47235590 }
47245591
47255592 __setup("stmmaceth=", stmmac_cmdline_opt);
....@@ -4729,16 +5596,9 @@
47295596 {
47305597 #ifdef CONFIG_DEBUG_FS
47315598 /* Create debugfs main directory if it doesn't exist yet */
4732
- if (!stmmac_fs_dir) {
5599
+ if (!stmmac_fs_dir)
47335600 stmmac_fs_dir = debugfs_create_dir(STMMAC_RESOURCE_NAME, NULL);
4734
-
4735
- if (!stmmac_fs_dir || IS_ERR(stmmac_fs_dir)) {
4736
- pr_err("ERROR %s, debugfs create directory failed\n",
4737
- STMMAC_RESOURCE_NAME);
4738
-
4739
- return -ENOMEM;
4740
- }
4741
- }
5601
+ register_netdevice_notifier(&stmmac_notifier);
47425602 #endif
47435603
47445604 return 0;
....@@ -4747,6 +5607,7 @@
47475607 static void __exit stmmac_exit(void)
47485608 {
47495609 #ifdef CONFIG_DEBUG_FS
5610
+ unregister_netdevice_notifier(&stmmac_notifier);
47505611 debugfs_remove_recursive(stmmac_fs_dir);
47515612 #endif
47525613 }