2 * Airgo MIMO wireless driver
4 * Copyright (c) 2007 Li YanBo <dreamfly281@gmail.com>
6 * Thanks for Jeff Williams <angelbane@gmail.com> do reverse engineer
7 * works and published the SPECS at http://airgo.wdwconsulting.net/mymoin
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License version 2 as
11 * published by the Free Software Foundation.
14 #include <linux/pci.h>
15 #include <linux/delay.h>
20 unsigned int rx_frame_cnt;
21 /* unsigned int local_tx_sent_cnt = 0; */
23 static inline void disable_rx_engine(struct agnx_priv *priv)
25 void __iomem *ctl = priv->ctl;
26 iowrite32(0x100, ctl + AGNX_CIR_RXCTL);
27 /* Wait for RX Control to have the Disable Rx Interrupt (0x100) set */
28 ioread32(ctl + AGNX_CIR_RXCTL);
31 static inline void enable_rx_engine(struct agnx_priv *priv)
33 void __iomem *ctl = priv->ctl;
34 iowrite32(0x80, ctl + AGNX_CIR_RXCTL);
35 ioread32(ctl + AGNX_CIR_RXCTL);
38 inline void disable_rx_interrupt(struct agnx_priv *priv)
40 void __iomem *ctl = priv->ctl;
43 disable_rx_engine(priv);
44 reg = ioread32(ctl + AGNX_CIR_RXCFG);
46 iowrite32(reg, ctl + AGNX_CIR_RXCFG);
47 ioread32(ctl + AGNX_CIR_RXCFG);
50 inline void enable_rx_interrupt(struct agnx_priv *priv)
52 void __iomem *ctl = priv->ctl;
55 reg = ioread32(ctl + AGNX_CIR_RXCFG);
57 iowrite32(reg, ctl + AGNX_CIR_RXCFG);
58 ioread32(ctl + AGNX_CIR_RXCFG);
59 enable_rx_engine(priv);
62 static inline void rx_desc_init(struct agnx_priv *priv, unsigned int idx)
64 struct agnx_desc *desc = priv->rx.desc + idx;
65 struct agnx_info *info = priv->rx.info + idx;
67 memset(info, 0, sizeof(*info));
69 info->dma_len = IEEE80211_MAX_RTS_THRESHOLD + sizeof(struct agnx_hdr);
70 info->skb = dev_alloc_skb(info->dma_len);
71 if (info->skb == NULL)
72 agnx_bug("refill err");
74 info->mapping = pci_map_single(priv->pdev, skb_tail_pointer(info->skb),
75 info->dma_len, PCI_DMA_FROMDEVICE);
76 memset(desc, 0, sizeof(*desc));
77 desc->dma_addr = cpu_to_be32(info->mapping);
78 /* Set the owner to the card */
79 desc->frag = cpu_to_be32(be32_to_cpu(desc->frag) | OWNER);
82 static inline void rx_desc_reinit(struct agnx_priv *priv, unsigned int idx)
84 struct agnx_info *info = priv->rx.info + idx;
86 /* Cause ieee80211 will free the skb buffer, so we needn't to free it again?! */
87 pci_unmap_single(priv->pdev, info->mapping, info->dma_len, PCI_DMA_FROMDEVICE);
88 rx_desc_init(priv, idx);
91 static inline void rx_desc_reusing(struct agnx_priv *priv, unsigned int idx)
93 struct agnx_desc *desc = priv->rx.desc + idx;
94 struct agnx_info *info = priv->rx.info + idx;
96 memset(desc, 0, sizeof(*desc));
97 desc->dma_addr = cpu_to_be32(info->mapping);
98 /* Set the owner to the card */
99 desc->frag = cpu_to_be32(be32_to_cpu(desc->frag) | OWNER);
102 static void rx_desc_free(struct agnx_priv *priv, unsigned int idx)
104 struct agnx_desc *desc = priv->rx.desc + idx;
105 struct agnx_info *info = priv->rx.info + idx;
107 BUG_ON(!desc || !info);
109 pci_unmap_single(priv->pdev, info->mapping, info->dma_len, PCI_DMA_FROMDEVICE);
111 dev_kfree_skb(info->skb);
112 memset(info, 0, sizeof(*info));
113 memset(desc, 0, sizeof(*desc));
116 static inline void __tx_desc_free(struct agnx_priv *priv,
117 struct agnx_desc *desc, struct agnx_info *info)
119 BUG_ON(!desc || !info);
120 /* TODO make sure mapping, skb and len are consistency */
122 pci_unmap_single(priv->pdev, info->mapping,
123 info->dma_len, PCI_DMA_TODEVICE);
124 if (info->type == PACKET)
125 dev_kfree_skb(info->skb);
127 memset(info, 0, sizeof(*info));
128 memset(desc, 0, sizeof(*desc));
131 static void txm_desc_free(struct agnx_priv *priv, unsigned int idx)
133 struct agnx_desc *desc = priv->txm.desc + idx;
134 struct agnx_info *info = priv->txm.info + idx;
136 __tx_desc_free(priv, desc, info);
139 static void txd_desc_free(struct agnx_priv *priv, unsigned int idx)
141 struct agnx_desc *desc = priv->txd.desc + idx;
142 struct agnx_info *info = priv->txd.info + idx;
144 __tx_desc_free(priv, desc, info);
147 int fill_rings(struct agnx_priv *priv)
149 void __iomem *ctl = priv->ctl;
154 priv->txd.idx_sent = priv->txm.idx_sent = 0;
155 priv->rx.idx = priv->txm.idx = priv->txd.idx = 0;
157 for (i = 0; i < priv->rx.size; i++)
158 rx_desc_init(priv, i);
159 for (i = 0; i < priv->txm.size; i++) {
160 memset(priv->txm.desc + i, 0, sizeof(struct agnx_desc));
161 memset(priv->txm.info + i, 0, sizeof(struct agnx_info));
163 for (i = 0; i < priv->txd.size; i++) {
164 memset(priv->txd.desc + i, 0, sizeof(struct agnx_desc));
165 memset(priv->txd.info + i, 0, sizeof(struct agnx_info));
168 /* FIXME Set the card RX TXM and TXD address */
169 agnx_write32(ctl, AGNX_CIR_RXCMSTART, priv->rx.dma);
170 agnx_write32(ctl, AGNX_CIR_RXCMEND, priv->txm.dma);
172 agnx_write32(ctl, AGNX_CIR_TXMSTART, priv->txm.dma);
173 agnx_write32(ctl, AGNX_CIR_TXMEND, priv->txd.dma);
175 agnx_write32(ctl, AGNX_CIR_TXDSTART, priv->txd.dma);
176 agnx_write32(ctl, AGNX_CIR_TXDEND, priv->txd.dma +
177 sizeof(struct agnx_desc) * priv->txd.size);
179 /* FIXME Relinquish control of rings to card */
180 reg = agnx_read32(ctl, AGNX_CIR_BLKCTL);
182 agnx_write32(ctl, AGNX_CIR_BLKCTL, reg);
186 void unfill_rings(struct agnx_priv *priv)
192 spin_lock_irqsave(&priv->lock, flags);
194 for (i = 0; i < priv->rx.size; i++)
195 rx_desc_free(priv, i);
196 for (i = 0; i < priv->txm.size; i++)
197 txm_desc_free(priv, i);
198 for (i = 0; i < priv->txd.size; i++)
199 txd_desc_free(priv, i);
201 spin_unlock_irqrestore(&priv->lock, flags);
204 /* Extract the bitrate out of a CCK PLCP header.
205 copy from bcm43xx driver */
206 static inline u8 agnx_plcp_get_bitrate_cck(__be32 *phyhdr_11b)
209 switch (*(u8 *)phyhdr_11b) {
219 agnx_bug("Wrong plcp rate");
224 static inline u8 agnx_plcp_get_bitrate_ofdm(__be32 *phyhdr_11g)
226 u8 rate = *(u8 *)phyhdr_11g & 0xF;
228 printk(PFX "G mode rate is 0x%x\n", rate);
233 static void get_rx_stats(struct agnx_priv *priv, struct agnx_hdr *hdr,
234 struct ieee80211_rx_status *stat)
236 void __iomem *ctl = priv->ctl;
239 /* FIXME just for test */
240 int snr = 40; /* signal-to-noise ratio */
242 memset(stat, 0, sizeof(*stat));
244 rssi = (u8 *)&hdr->phy_stats_lo;
245 /* stat->ssi = (rssi[0] + rssi[1] + rssi[2]) / 3; */
247 noise = ioread32(ctl + AGNX_GCR_NOISE0);
248 noise += ioread32(ctl + AGNX_GCR_NOISE1);
249 noise += ioread32(ctl + AGNX_GCR_NOISE2);
250 stat->noise = noise / 3;
252 /* snr = stat->ssi - stat->noise; */
253 if (snr >= 0 && snr < 40)
254 stat->signal = 5 * snr / 2;
261 if (hdr->_11b0 && !hdr->_11g0) {
262 stat->rate_idx = agnx_plcp_get_bitrate_cck(&hdr->_11b0);
263 } else if (!hdr->_11b0 && hdr->_11g0) {
264 printk(PFX "RX: Found G mode packet\n");
265 stat->rate_idx = agnx_plcp_get_bitrate_ofdm(&hdr->_11g0);
267 agnx_bug("Unknown packets type");
270 stat->band = IEEE80211_BAND_2GHZ;
271 stat->freq = agnx_channels[priv->channel - 1].center_freq;
272 /* stat->antenna = 3;
273 stat->mactime = be32_to_cpu(hdr->time_stamp);
274 stat->channel = priv->channel; */
277 static inline void combine_hdr_frag(struct ieee80211_hdr *ieeehdr,
283 fctl = le16_to_cpu(ieeehdr->frame_control);
284 hdrlen = ieee80211_hdrlen(fctl);
286 if (hdrlen < (2+2+6)/*minimum hdr*/ ||
287 hdrlen > sizeof(struct ieee80211_mgmt)) {
288 printk(KERN_ERR PFX "hdr len is %d\n", hdrlen);
289 agnx_bug("Wrong ieee80211 hdr detected");
291 skb_push(skb, hdrlen);
292 memcpy(skb->data, ieeehdr, hdrlen);
293 } /* combine_hdr_frag */
295 static inline int agnx_packet_check(struct agnx_priv *priv, struct agnx_hdr *agnxhdr,
298 if (agnx_get_bits(CRC_FAIL, CRC_FAIL_SHIFT, be32_to_cpu(agnxhdr->reg1)) == 1) {
299 printk(PFX "RX: CRC check fail\n");
302 if (packet_len > 2048) {
303 printk(PFX "RX: Too long packet detected\n");
307 /* FIXME Just usable for Promious Mode, for Manage mode exclude FCS */
308 /* if (packet_len - sizeof(*agnxhdr) < FCS_LEN) { */
309 /* printk(PFX "RX: Too short packet detected\n"); */
314 priv->stats.dot11FCSErrorCount++;
318 void handle_rx_irq(struct agnx_priv *priv)
320 struct ieee80211_rx_status status;
325 struct agnx_desc *desc;
327 struct agnx_info *info;
328 struct agnx_hdr *hdr;
330 unsigned int i = priv->rx.idx % priv->rx.size;
332 desc = priv->rx.desc + i;
333 frag = be32_to_cpu(desc->frag);
337 info = priv->rx.info + i;
339 hdr = (struct agnx_hdr *)(skb->data);
341 len = (frag & PACKET_LEN) >> PACKET_LEN_SHIFT;
342 if (agnx_packet_check(priv, hdr, len) == -1) {
343 rx_desc_reusing(priv, i);
350 fctl = le16_to_cpu(((struct ieee80211_hdr *)hdr->mac_hdr)->frame_control);
351 if ((fctl & IEEE80211_FCTL_STYPE) != IEEE80211_STYPE_BEACON)/* && !(fctl & IEEE80211_STYPE_BEACON)) */
352 dump_ieee80211_hdr((struct ieee80211_hdr *)hdr->mac_hdr, "RX");
355 if (hdr->_11b0 && !hdr->_11g0) {
357 u16 fctl = le16_to_cpu(((struct ieee80211_hdr *)hdr->mac_hdr)
359 if ( (fctl & IEEE80211_FCTL_FTYPE) == IEEE80211_FTYPE_DATA) {
360 agnx_print_rx_hdr(hdr);
361 agnx_print_sta(priv, BSSID_STAID);
362 for (j = 0; j < 8; j++)
363 agnx_print_sta_tx_wq(priv, BSSID_STAID, j);
366 get_rx_stats(priv, hdr, &status);
367 skb_pull(skb, sizeof(*hdr));
368 combine_hdr_frag((struct ieee80211_hdr *)hdr->mac_hdr, skb);
369 } else if (!hdr->_11b0 && hdr->_11g0) {
371 agnx_print_rx_hdr(hdr);
372 agnx_print_sta(priv, BSSID_STAID);
373 /* for (j = 0; j < 8; j++) */
374 agnx_print_sta_tx_wq(priv, BSSID_STAID, 0);
376 print_hex_dump_bytes("agnx: RX_PACKET: ", DUMP_PREFIX_NONE,
377 skb->data, skb->len + 8);
379 /* if (agnx_plcp_get_bitrate_ofdm(&hdr->_11g0) == 0) */
380 get_rx_stats(priv, hdr, &status);
381 skb_pull(skb, sizeof(*hdr));
382 combine_hdr_frag((struct ieee80211_hdr *)
383 ((void *)&hdr->mac_hdr), skb);
384 /* dump_ieee80211_hdr((struct ieee80211_hdr *)skb->data, "RX G"); */
386 agnx_bug("Unknown packets type");
387 ieee80211_rx_irqsafe(priv->hw, skb, &status);
388 rx_desc_reinit(priv, i);
390 } while (priv->rx.idx++);
391 } /* handle_rx_irq */
393 static inline void handle_tx_irq(struct agnx_priv *priv, struct agnx_ring *ring)
395 struct agnx_desc *desc;
396 struct agnx_info *info;
399 for (idx = ring->idx_sent; idx < ring->idx; idx++) {
400 unsigned int i = idx % ring->size;
403 desc = ring->desc + i;
404 info = ring->info + i;
406 frag = be32_to_cpu(desc->frag);
408 if (info->type == HEADER)
411 agnx_bug("TX error");
414 pci_unmap_single(priv->pdev, info->mapping, info->dma_len, PCI_DMA_TODEVICE);
419 len = info->skb->len - sizeof(struct agnx_hdr) + info->hdr_len;
420 /* if (len == 614) { */
421 /* agnx_print_desc(desc); */
422 if (info->type == PACKET) {
423 /* agnx_print_tx_hdr((struct agnx_hdr *)info->skb->data); */
424 /* agnx_print_sta_power(priv, LOCAL_STAID); */
425 /* agnx_print_sta(priv, LOCAL_STAID); */
426 /* for (j = 0; j < 8; j++) */
427 /* agnx_print_sta_tx_wq(priv, LOCAL_STAID, 0); */
428 /* agnx_print_sta_power(priv, BSSID_STAID); */
429 /* agnx_print_sta(priv, BSSID_STAID); */
430 /* for (j = 0; j < 8; j++) */
431 /* agnx_print_sta_tx_wq(priv, BSSID_STAID, 0); */
436 if (info->type == PACKET) {
437 /* dump_txm_registers(priv);
438 dump_rxm_registers(priv);
439 dump_bm_registers(priv);
440 dump_cir_registers(priv); */
443 if (info->type == PACKET) {
444 /* struct ieee80211_hdr *hdr; */
445 struct ieee80211_tx_info *txi = IEEE80211_SKB_CB(info->skb);
447 skb_pull(info->skb, sizeof(struct agnx_hdr));
448 memcpy(skb_push(info->skb, info->hdr_len), &info->hdr, info->hdr_len);
450 /* dump_ieee80211_hdr((struct ieee80211_hdr *)info->skb->data, "TX_HANDLE"); */
451 /* print_hex_dump_bytes("agnx: TX_HANDLE: ", DUMP_PREFIX_NONE, */
452 /* info->skb->data, info->skb->len); */
454 if (!(txi->flags & IEEE80211_TX_CTL_NO_ACK))
455 txi->flags |= IEEE80211_TX_STAT_ACK;
457 ieee80211_tx_status_irqsafe(priv->hw, info->skb);
460 /* info->tx_status.queue_number = (ring->size - i) / 2; */
461 /* ieee80211_tx_status_irqsafe(priv->hw, info->skb, &(info->tx_status)); */
463 /* dev_kfree_skb_irq(info->skb); */
465 memset(desc, 0, sizeof(*desc));
466 memset(info, 0, sizeof(*info));
469 ring->idx_sent = idx;
470 /* TODO fill the priv->low_level_stats */
472 /* ieee80211_wake_queue(priv->hw, 0); */
475 void handle_txm_irq(struct agnx_priv *priv)
477 handle_tx_irq(priv, &priv->txm);
480 void handle_txd_irq(struct agnx_priv *priv)
482 handle_tx_irq(priv, &priv->txd);
485 void handle_other_irq(struct agnx_priv *priv)
487 /* void __iomem *ctl = priv->ctl; */
488 u32 status = priv->irq_status;
489 void __iomem *ctl = priv->ctl;
492 if (status & IRQ_TX_BEACON) {
493 iowrite32(IRQ_TX_BEACON, ctl + AGNX_INT_STAT);
494 printk(PFX "IRQ: TX Beacon control is 0X%.8X\n", ioread32(ctl + AGNX_TXM_BEACON_CTL));
495 printk(PFX "IRQ: TX Beacon rx frame num: %d\n", rx_frame_cnt);
497 if (status & IRQ_TX_RETRY) {
498 reg = ioread32(ctl + AGNX_TXM_RETRYSTAID);
499 printk(PFX "IRQ: TX Retry, RETRY STA ID is %x\n", reg);
501 if (status & IRQ_TX_ACTIVITY)
502 printk(PFX "IRQ: TX Activity\n");
503 if (status & IRQ_RX_ACTIVITY)
504 printk(PFX "IRQ: RX Activity\n");
505 if (status & IRQ_RX_X)
506 printk(PFX "IRQ: RX X\n");
507 if (status & IRQ_RX_Y) {
508 reg = ioread32(ctl + AGNX_INT_MASK);
510 iowrite32(reg, ctl + AGNX_INT_MASK);
511 iowrite32(IRQ_RX_Y, ctl + AGNX_INT_STAT);
512 printk(PFX "IRQ: RX Y\n");
514 if (status & IRQ_RX_HASHHIT) {
515 reg = ioread32(ctl + AGNX_INT_MASK);
516 reg &= ~IRQ_RX_HASHHIT;
517 iowrite32(reg, ctl + AGNX_INT_MASK);
518 iowrite32(IRQ_RX_HASHHIT, ctl + AGNX_INT_STAT);
519 printk(PFX "IRQ: RX Hash Hit\n");
522 if (status & IRQ_RX_FRAME) {
523 reg = ioread32(ctl + AGNX_INT_MASK);
524 reg &= ~IRQ_RX_FRAME;
525 iowrite32(reg, ctl + AGNX_INT_MASK);
526 iowrite32(IRQ_RX_FRAME, ctl + AGNX_INT_STAT);
527 printk(PFX "IRQ: RX Frame\n");
530 if (status & IRQ_ERR_INT) {
531 iowrite32(IRQ_ERR_INT, ctl + AGNX_INT_STAT);
532 /* agnx_hw_reset(priv); */
533 printk(PFX "IRQ: Error Interrupt\n");
535 if (status & IRQ_TX_QUE_FULL)
536 printk(PFX "IRQ: TX Workqueue Full\n");
537 if (status & IRQ_BANDMAN_ERR)
538 printk(PFX "IRQ: Bandwidth Management Error\n");
539 if (status & IRQ_TX_DISABLE)
540 printk(PFX "IRQ: TX Disable\n");
541 if (status & IRQ_RX_IVASESKEY)
542 printk(PFX "IRQ: RX Invalid Session Key\n");
543 if (status & IRQ_REP_THHIT)
544 printk(PFX "IRQ: Replay Threshold Hit\n");
545 if (status & IRQ_TIMER1)
546 printk(PFX "IRQ: Timer1\n");
547 if (status & IRQ_TIMER_CNT)
548 printk(PFX "IRQ: Timer Count\n");
549 if (status & IRQ_PHY_FASTINT)
550 printk(PFX "IRQ: Phy Fast Interrupt\n");
551 if (status & IRQ_PHY_SLOWINT)
552 printk(PFX "IRQ: Phy Slow Interrupt\n");
553 if (status & IRQ_OTHER)
554 printk(PFX "IRQ: 0x80000000\n");
555 } /* handle_other_irq */
558 static inline void route_flag_set(struct agnx_hdr *txhdr)
563 /* reg = (0x7 << ROUTE_COMPRESSION_SHIFT) & ROUTE_COMPRESSION; */
564 /* txhdr->reg5 = cpu_to_be32(reg); */
565 txhdr->reg5 = (0xa << 0x0) | (0x7 << 0x18);
566 /* txhdr->reg5 = cpu_to_be32((0xa << 0x0) | (0x7 << 0x18)); */
567 /* txhdr->reg5 = cpu_to_be32(0x7 << 0x0); */
570 /* Return 0 if no match */
571 static inline unsigned int get_power_level(unsigned int rate, unsigned int antennas_num)
573 unsigned int power_level;
605 agnx_bug("Error rate setting\n");
608 if (power_level && (antennas_num == 2))
614 static inline void fill_agnx_hdr(struct agnx_priv *priv, struct agnx_info *tx_info)
616 struct agnx_hdr *txhdr = (struct agnx_hdr *)tx_info->skb->data;
618 u16 fc = le16_to_cpu(*(__le16 *)&tx_info->hdr);
621 memset(txhdr, 0, sizeof(*txhdr));
623 /* reg = agnx_set_bits(STATION_ID, STATION_ID_SHIFT, LOCAL_STAID); */
624 reg = agnx_set_bits(STATION_ID, STATION_ID_SHIFT, BSSID_STAID);
625 reg |= agnx_set_bits(WORKQUEUE_ID, WORKQUEUE_ID_SHIFT, 0);
626 txhdr->reg4 = cpu_to_be32(reg);
628 /* Set the Hardware Sequence Number to 1? */
629 reg = agnx_set_bits(SEQUENCE_NUMBER, SEQUENCE_NUMBER_SHIFT, 0);
630 /* reg = agnx_set_bits(SEQUENCE_NUMBER, SEQUENCE_NUMBER_SHIFT, 1); */
631 reg |= agnx_set_bits(MAC_HDR_LEN, MAC_HDR_LEN_SHIFT, tx_info->hdr_len);
632 txhdr->reg1 = cpu_to_be32(reg);
633 /* Set the agnx_hdr's MAC header */
634 memcpy(txhdr->mac_hdr, &tx_info->hdr, tx_info->hdr_len);
636 reg = agnx_set_bits(ACK, ACK_SHIFT, 1);
637 /* reg = agnx_set_bits(ACK, ACK_SHIFT, 0); */
638 reg |= agnx_set_bits(MULTICAST, MULTICAST_SHIFT, 0);
639 /* reg |= agnx_set_bits(MULTICAST, MULTICAST_SHIFT, 1); */
640 reg |= agnx_set_bits(RELAY, RELAY_SHIFT, 0);
641 reg |= agnx_set_bits(TM, TM_SHIFT, 0);
642 txhdr->reg0 = cpu_to_be32(reg);
644 /* Set the long and short retry limits */
645 txhdr->tx.short_retry_limit = tx_info->txi->control.rates[0].count;
646 txhdr->tx.long_retry_limit = tx_info->txi->control.rates[0].count;
649 len = tx_info->skb->len - sizeof(*txhdr) + tx_info->hdr_len + FCS_LEN;
650 if (fc & IEEE80211_FCTL_PROTECTED)
653 reg = agnx_set_bits(FRAG_SIZE, FRAG_SIZE_SHIFT, len);
654 len = tx_info->skb->len - sizeof(*txhdr);
655 reg |= agnx_set_bits(PAYLOAD_LEN, PAYLOAD_LEN_SHIFT, len);
656 txhdr->reg3 = cpu_to_be32(reg);
658 route_flag_set(txhdr);
661 static void txm_power_set(struct agnx_priv *priv,
662 struct ieee80211_tx_info *txi)
664 struct agnx_sta_power power;
668 if (txi->control.rates[0].idx < 0) {
669 /* For B mode Short Preamble */
670 reg = agnx_set_bits(PHY_MODE, PHY_MODE_SHIFT, AGNX_MODE_80211B_SHORT);
671 /* control->tx_rate = -control->tx_rate; */
673 reg = agnx_set_bits(PHY_MODE, PHY_MODE_SHIFT, AGNX_MODE_80211G);
674 /* reg = agnx_set_bits(PHY_MODE, PHY_MODE_SHIFT, AGNX_MODE_80211B_LONG); */
675 reg |= agnx_set_bits(SIGNAL, SIGNAL_SHIFT, 0xB);
676 reg |= agnx_set_bits(RATE, RATE_SHIFT, 0xB);
677 /* reg |= agnx_set_bits(POWER_LEVEL, POWER_LEVEL_SHIFT, 15); */
678 reg |= agnx_set_bits(POWER_LEVEL, POWER_LEVEL_SHIFT, 20);
679 /* if rate < 11M set it to 0 */
680 reg |= agnx_set_bits(NUM_TRANSMITTERS, NUM_TRANSMITTERS_SHIFT, 1);
681 /* reg |= agnx_set_bits(EDCF, EDCF_SHIFT, 1); */
682 /* reg |= agnx_set_bits(TIFS, TIFS_SHIFT, 1); */
685 /* power.reg = cpu_to_le32(reg); */
687 /* set_sta_power(priv, &power, LOCAL_STAID); */
688 set_sta_power(priv, &power, BSSID_STAID);
691 static inline int tx_packet_check(struct sk_buff *skb)
693 unsigned int ieee_len = ieee80211_get_hdrlen_from_skb(skb);
694 if (skb->len > 2048) {
695 printk(KERN_ERR PFX "length is %d\n", skb->len);
696 agnx_bug("Too long TX skb");
700 if (skb->len == ieee_len) {
701 printk(PFX "A strange TX packet\n");
703 /* tx_faile_irqsafe(); */
708 static int __agnx_tx(struct agnx_priv *priv, struct sk_buff *skb,
709 struct agnx_ring *ring)
711 struct agnx_desc *hdr_desc, *frag_desc;
712 struct agnx_info *hdr_info, *frag_info;
713 struct ieee80211_tx_info *txi = IEEE80211_SKB_CB(skb);
717 spin_lock_irqsave(&priv->lock, flags);
719 /* The RX interrupt need be Disable until this TX packet
720 is handled in the next tx interrupt */
721 disable_rx_interrupt(priv);
725 /* if (priv->txm_idx - priv->txm_idx_sent == AGNX_TXM_RING_SIZE - 2) */
726 /* ieee80211_stop_queue(priv->hw, 0); */
728 /* Set agnx header's info and desc */
730 hdr_desc = ring->desc + i;
731 hdr_info = ring->info + i;
732 hdr_info->hdr_len = ieee80211_get_hdrlen_from_skb(skb);
733 memcpy(&hdr_info->hdr, skb->data, hdr_info->hdr_len);
735 /* Add the agnx header to the front of the SKB */
736 skb_push(skb, sizeof(struct agnx_hdr) - hdr_info->hdr_len);
739 hdr_info->dma_len = sizeof(struct agnx_hdr);
741 hdr_info->type = HEADER;
742 fill_agnx_hdr(priv, hdr_info);
743 hdr_info->mapping = pci_map_single(priv->pdev, skb->data,
744 hdr_info->dma_len, PCI_DMA_TODEVICE);
747 frag |= agnx_set_bits(FIRST_FRAG, FIRST_FRAG_SHIFT, 1);
748 frag |= agnx_set_bits(LAST_FRAG, LAST_FRAG_SHIFT, 0);
749 frag |= agnx_set_bits(PACKET_LEN, PACKET_LEN_SHIFT, skb->len);
750 frag |= agnx_set_bits(FIRST_FRAG_LEN, FIRST_FRAG_LEN_SHIFT, 1);
751 frag |= agnx_set_bits(OWNER, OWNER_SHIFT, 1);
752 hdr_desc->frag = cpu_to_be32(frag);
754 hdr_desc->dma_addr = cpu_to_be32(hdr_info->mapping);
757 /* Set Frag's info and desc */
758 i = (i + 1) % ring->size;
759 frag_desc = ring->desc + i;
760 frag_info = ring->info + i;
761 memcpy(frag_info, hdr_info, sizeof(struct agnx_info));
762 frag_info->type = PACKET;
763 frag_info->dma_len = skb->len - hdr_info->dma_len;
764 frag_info->mapping = pci_map_single(priv->pdev, skb->data + hdr_info->dma_len,
765 frag_info->dma_len, PCI_DMA_TODEVICE);
768 frag |= agnx_set_bits(FIRST_FRAG, FIRST_FRAG_SHIFT, 0);
769 frag |= agnx_set_bits(LAST_FRAG, LAST_FRAG_SHIFT, 1);
770 frag |= agnx_set_bits(PACKET_LEN, PACKET_LEN_SHIFT, skb->len);
771 frag |= agnx_set_bits(SUB_FRAG_LEN, SUB_FRAG_LEN_SHIFT, frag_info->dma_len);
772 frag_desc->frag = cpu_to_be32(frag);
774 frag_desc->dma_addr = cpu_to_be32(frag_info->mapping);
776 txm_power_set(priv, txi);
781 /* len = skb->len - hdr_info->dma_len + hdr_info->hdr_len; */
782 /* if (len == 614) { */
783 /* agnx_print_desc(hdr_desc); */
784 /* agnx_print_desc(frag_desc); */
785 /* agnx_print_tx_hdr((struct agnx_hdr *)skb->data); */
786 /* agnx_print_sta_power(priv, LOCAL_STAID); */
787 /* agnx_print_sta(priv, LOCAL_STAID); */
788 /* for (j = 0; j < 8; j++) */
789 /* agnx_print_sta_tx_wq(priv, LOCAL_STAID, j); */
790 /* agnx_print_sta_power(priv, BSSID_STAID); */
791 /* agnx_print_sta(priv, BSSID_STAID); */
792 /* for (j = 0; j < 8; j++) */
793 /* agnx_print_sta_tx_wq(priv, BSSID_STAID, j); */
797 spin_unlock_irqrestore(&priv->lock, flags);
799 /* FIXME ugly code */
803 reg = (ioread32(priv->ctl + AGNX_CIR_TXMCTL));
805 iowrite32((reg), priv->ctl + AGNX_CIR_TXMCTL);
811 reg = (ioread32(priv->ctl + AGNX_CIR_TXDCTL));
813 iowrite32((reg), priv->ctl + AGNX_CIR_TXDCTL);
819 int _agnx_tx(struct agnx_priv *priv, struct sk_buff *skb)
823 if (tx_packet_check(skb))
826 /* print_hex_dump_bytes("agnx: TX_PACKET: ", DUMP_PREFIX_NONE, */
827 /* skb->data, skb->len); */
829 fctl = le16_to_cpu(*((__le16 *)skb->data));
831 if ((fctl & IEEE80211_FCTL_FTYPE) == IEEE80211_FTYPE_DATA)
832 return __agnx_tx(priv, skb, &priv->txd);
834 return __agnx_tx(priv, skb, &priv->txm);