usb_audio_qmi_svc.c 53 KB

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  1. // SPDX-License-Identifier: GPL-2.0-only
  2. /*
  3. * Copyright (c) 2016-2021, The Linux Foundation. All rights reserved.
  4. * Copyright (c) 2022-2024, Qualcomm Innovation Center, Inc. All rights reserved.
  5. */
  6. #include <linux/module.h>
  7. #include <linux/slab.h>
  8. #include <linux/errno.h>
  9. #include <linux/delay.h>
  10. #include <linux/debugfs.h>
  11. #include <linux/usb/audio.h>
  12. #include <linux/usb/audio-v2.h>
  13. #include <linux/uaccess.h>
  14. #include <sound/pcm.h>
  15. #include <sound/pcm_params.h>
  16. #include <sound/core.h>
  17. #include <sound/asound.h>
  18. #include <linux/usb.h>
  19. #include <linux/soc/qcom/qmi.h>
  20. #include <linux/iommu.h>
  21. #include <linux/dma-mapping.h>
  22. #include <linux/dma-map-ops.h>
  23. #include <linux/platform_device.h>
  24. #include <linux/usb/audio-v3.h>
  25. #include <linux/ipc_logging.h>
  26. #include <trace/hooks/audio_usboffload.h>
  27. #include <trace/hooks/xhci.h>
  28. #include <trace/hooks/usb.h>
  29. #include "usbaudio.h"
  30. #include "card.h"
  31. #include "endpoint.h"
  32. #include "helper.h"
  33. #include "pcm.h"
  34. #include "power.h"
  35. #include "usb_audio_qmi_v01.h"
  36. #ifdef CONFIG_USB_NOTIFY_PROC_LOG
  37. #include <linux/usb_notify.h>
  38. #endif
  39. #define BUS_INTERVAL_FULL_SPEED 1000 /* in us */
  40. #define BUS_INTERVAL_HIGHSPEED_AND_ABOVE 125 /* in us */
  41. #define MAX_BINTERVAL_ISOC_EP 16
  42. #define DEV_RELEASE_WAIT_TIMEOUT 10000 /* in ms */
  43. #define SND_PCM_CARD_NUM_MASK 0xffff0000
  44. #define SND_PCM_DEV_NUM_MASK 0xff00
  45. #define SND_PCM_STREAM_DIRECTION 0xff
  46. #define PREPEND_SID_TO_IOVA(iova, sid) ((u64)(((u64)(iova)) | \
  47. (((u64)sid) << 32)))
  48. /* event ring iova base address */
  49. #define IOVA_BASE 0x1000
  50. #define IOVA_XFER_RING_BASE (IOVA_BASE + PAGE_SIZE * (SNDRV_CARDS + 1))
  51. #define IOVA_XFER_BUF_BASE (IOVA_XFER_RING_BASE + PAGE_SIZE * SNDRV_CARDS * 32)
  52. #define IOVA_XFER_RING_MAX (IOVA_XFER_BUF_BASE - PAGE_SIZE)
  53. #define IOVA_XFER_BUF_MAX (0xfffff000 - PAGE_SIZE)
  54. #define MAX_XFER_BUFF_LEN (24 * PAGE_SIZE)
  55. struct xhci_ring;
  56. struct xhci_ring *xhci_sec_event_ring_setup(struct usb_device *udev,
  57. unsigned int intr_num);
  58. int xhci_sec_event_ring_cleanup(struct usb_device *udev, struct xhci_ring *ring);
  59. phys_addr_t xhci_get_sec_event_ring_phys_addr(struct usb_device *udev,
  60. struct xhci_ring *ring, dma_addr_t *dma);
  61. phys_addr_t xhci_get_xfer_ring_phys_addr(struct usb_device *udev,
  62. struct usb_host_endpoint *ep, dma_addr_t *dma);
  63. int xhci_stop_endpoint(struct usb_device *udev, struct usb_host_endpoint *ep);
  64. struct iova_info {
  65. struct list_head list;
  66. unsigned long start_iova;
  67. size_t size;
  68. bool in_use;
  69. };
  70. struct intf_info {
  71. unsigned long data_xfer_ring_va;
  72. size_t data_xfer_ring_size;
  73. unsigned long sync_xfer_ring_va;
  74. size_t sync_xfer_ring_size;
  75. unsigned long xfer_buf_va;
  76. size_t xfer_buf_size;
  77. phys_addr_t xfer_buf_pa;
  78. unsigned int data_ep_pipe;
  79. unsigned int sync_ep_pipe;
  80. u8 *xfer_buf;
  81. u8 intf_num;
  82. u8 pcm_card_num;
  83. u8 pcm_dev_num;
  84. u8 direction;
  85. bool in_use;
  86. };
  87. struct uaudio_dev {
  88. struct usb_device *udev;
  89. /* audio control interface */
  90. struct usb_host_interface *ctrl_intf;
  91. unsigned int card_num;
  92. unsigned int usb_core_id;
  93. atomic_t in_use;
  94. struct kref kref;
  95. wait_queue_head_t disconnect_wq;
  96. /* interface specific */
  97. int num_intf;
  98. struct intf_info *info;
  99. struct snd_usb_audio *chip;
  100. };
  101. static struct uaudio_dev uadev[SNDRV_CARDS];
  102. struct uaudio_qmi_dev {
  103. struct device *dev;
  104. u32 sid;
  105. u32 intr_num;
  106. int active_idx;
  107. struct xhci_ring *sec_ring;
  108. struct iommu_domain *domain;
  109. /* list to keep track of available iova */
  110. struct list_head xfer_ring_list;
  111. size_t xfer_ring_iova_size;
  112. unsigned long curr_xfer_ring_iova;
  113. struct list_head xfer_buf_list;
  114. size_t xfer_buf_iova_size;
  115. unsigned long curr_xfer_buf_iova;
  116. /* bit fields representing pcm card enabled */
  117. unsigned long card_slot;
  118. /* indicate event ring mapped or not */
  119. bool er_mapped;
  120. };
  121. static struct uaudio_qmi_dev *uaudio_qdev;
  122. struct uaudio_qmi_svc {
  123. struct qmi_handle *uaudio_svc_hdl;
  124. struct work_struct qmi_disconnect_work;
  125. struct workqueue_struct *uaudio_wq;
  126. struct sockaddr_qrtr client_sq;
  127. bool client_connected;
  128. void *uaudio_ipc_log;
  129. };
  130. static struct uaudio_qmi_svc *uaudio_svc;
  131. static void handle_uaudio_stream_req(struct qmi_handle *handle,
  132. struct sockaddr_qrtr *sq,
  133. struct qmi_txn *txn,
  134. const void *decoded_msg);
  135. static struct qmi_msg_handler uaudio_stream_req_handlers = {
  136. .type = QMI_REQUEST,
  137. .msg_id = QMI_UAUDIO_STREAM_REQ_V01,
  138. .ei = qmi_uaudio_stream_req_msg_v01_ei,
  139. .decoded_size = QMI_UAUDIO_STREAM_REQ_MSG_V01_MAX_MSG_LEN,
  140. .fn = handle_uaudio_stream_req,
  141. };
  142. enum mem_type {
  143. MEM_EVENT_RING,
  144. MEM_XFER_RING,
  145. MEM_XFER_BUF,
  146. };
  147. enum usb_qmi_audio_format {
  148. USB_QMI_PCM_FORMAT_S8 = 0,
  149. USB_QMI_PCM_FORMAT_U8,
  150. USB_QMI_PCM_FORMAT_S16_LE,
  151. USB_QMI_PCM_FORMAT_S16_BE,
  152. USB_QMI_PCM_FORMAT_U16_LE,
  153. USB_QMI_PCM_FORMAT_U16_BE,
  154. USB_QMI_PCM_FORMAT_S24_LE,
  155. USB_QMI_PCM_FORMAT_S24_BE,
  156. USB_QMI_PCM_FORMAT_U24_LE,
  157. USB_QMI_PCM_FORMAT_U24_BE,
  158. USB_QMI_PCM_FORMAT_S24_3LE,
  159. USB_QMI_PCM_FORMAT_S24_3BE,
  160. USB_QMI_PCM_FORMAT_U24_3LE,
  161. USB_QMI_PCM_FORMAT_U24_3BE,
  162. USB_QMI_PCM_FORMAT_S32_LE,
  163. USB_QMI_PCM_FORMAT_S32_BE,
  164. USB_QMI_PCM_FORMAT_U32_LE,
  165. USB_QMI_PCM_FORMAT_U32_BE,
  166. };
  167. #define uaudio_print(level, fmt, ...) do { \
  168. ipc_log_string(uaudio_svc->uaudio_ipc_log, "%s%s: " fmt, "", __func__,\
  169. ##__VA_ARGS__); \
  170. printk("%s%s: " fmt, level, __func__, ##__VA_ARGS__); \
  171. } while (0)
  172. #ifdef CONFIG_DYNAMIC_DEBUG
  173. #define uaudio_dbg(fmt, ...) do { \
  174. ipc_log_string(uaudio_svc->uaudio_ipc_log, "%s: " fmt, __func__,\
  175. ##__VA_ARGS__); \
  176. dynamic_pr_debug("%s: " fmt, __func__, ##__VA_ARGS__); \
  177. } while (0)
  178. #else
  179. #define uaudio_dbg(fmt, ...) uaudio_print(KERN_DEBUG, fmt, ##__VA_ARGS__)
  180. #endif
  181. #define uaudio_info(fmt, ...) uaudio_print(KERN_INFO, fmt, ##__VA_ARGS__)
  182. #define uaudio_err(fmt, ...) uaudio_print(KERN_ERR, fmt, ##__VA_ARGS__)
  183. #define NUM_LOG_PAGES 10
  184. static int uaudio_snd_usb_pcm_change_state(struct snd_usb_substream *subs, int state)
  185. {
  186. int ret;
  187. if (!subs->str_pd)
  188. return 0;
  189. ret = snd_usb_power_domain_set(subs->stream->chip, subs->str_pd, state);
  190. if (ret < 0) {
  191. dev_err(&subs->dev->dev,
  192. "Cannot change Power Domain ID: %d to state: %d. Err: %d\n",
  193. subs->str_pd->pd_id, state, ret);
  194. return ret;
  195. }
  196. return 0;
  197. }
  198. static void uaudio_iommu_unmap(enum mem_type mtype, unsigned long va,
  199. size_t iova_size, size_t mapped_iova_size);
  200. static enum usb_audio_device_speed_enum_v01
  201. get_speed_info(enum usb_device_speed udev_speed)
  202. {
  203. switch (udev_speed) {
  204. case USB_SPEED_LOW:
  205. return USB_AUDIO_DEVICE_SPEED_LOW_V01;
  206. case USB_SPEED_FULL:
  207. return USB_AUDIO_DEVICE_SPEED_FULL_V01;
  208. case USB_SPEED_HIGH:
  209. return USB_AUDIO_DEVICE_SPEED_HIGH_V01;
  210. case USB_SPEED_SUPER:
  211. return USB_AUDIO_DEVICE_SPEED_SUPER_V01;
  212. case USB_SPEED_SUPER_PLUS:
  213. return USB_AUDIO_DEVICE_SPEED_SUPER_PLUS_V01;
  214. default:
  215. uaudio_err("udev speed %d\n", udev_speed);
  216. return USB_AUDIO_DEVICE_SPEED_INVALID_V01;
  217. }
  218. }
  219. static unsigned long uaudio_get_iova(unsigned long *curr_iova,
  220. size_t *curr_iova_size, struct list_head *head, size_t size)
  221. {
  222. struct iova_info *info, *new_info = NULL;
  223. struct list_head *curr_head;
  224. unsigned long va = 0;
  225. size_t tmp_size = size;
  226. bool found = false;
  227. if (size % PAGE_SIZE) {
  228. uaudio_err("size %zu is not page size multiple\n", size);
  229. goto done;
  230. }
  231. if (size > *curr_iova_size) {
  232. uaudio_err("size %zu > curr size %zu\n", size, *curr_iova_size);
  233. goto done;
  234. }
  235. if (*curr_iova_size == 0) {
  236. uaudio_err("iova mapping is full\n");
  237. goto done;
  238. }
  239. list_for_each_entry(info, head, list) {
  240. /* exact size iova_info */
  241. if (!info->in_use && info->size == size) {
  242. info->in_use = true;
  243. va = info->start_iova;
  244. *curr_iova_size -= size;
  245. found = true;
  246. uaudio_dbg("exact size: %zu found\n", size);
  247. goto done;
  248. } else if (!info->in_use && tmp_size >= info->size) {
  249. if (!new_info)
  250. new_info = info;
  251. uaudio_dbg("partial size: %zu found\n", info->size);
  252. tmp_size -= info->size;
  253. if (tmp_size)
  254. continue;
  255. va = new_info->start_iova;
  256. for (curr_head = &new_info->list; curr_head !=
  257. &info->list; curr_head = curr_head->next) {
  258. new_info = list_entry(curr_head, struct
  259. iova_info, list);
  260. new_info->in_use = true;
  261. }
  262. info->in_use = true;
  263. *curr_iova_size -= size;
  264. found = true;
  265. goto done;
  266. } else {
  267. /* iova region in use */
  268. new_info = NULL;
  269. tmp_size = size;
  270. }
  271. }
  272. info = kzalloc(sizeof(struct iova_info), GFP_KERNEL);
  273. if (!info) {
  274. va = 0;
  275. goto done;
  276. }
  277. va = info->start_iova = *curr_iova;
  278. info->size = size;
  279. info->in_use = true;
  280. *curr_iova += size;
  281. *curr_iova_size -= size;
  282. found = true;
  283. list_add_tail(&info->list, head);
  284. done:
  285. if (!found)
  286. uaudio_err("unable to find %zu size iova\n", size);
  287. else
  288. uaudio_dbg("va:0x%08lx curr_iova:0x%08lx curr_iova_size:%zu\n",
  289. va, *curr_iova, *curr_iova_size);
  290. return va;
  291. }
  292. static unsigned long uaudio_iommu_map(enum mem_type mtype, bool dma_coherent,
  293. phys_addr_t pa, size_t size, struct sg_table *sgt)
  294. {
  295. unsigned long va_sg, va = 0;
  296. bool map = true;
  297. int i, ret;
  298. size_t sg_len, total_len = 0;
  299. struct scatterlist *sg;
  300. phys_addr_t pa_sg;
  301. int prot = IOMMU_READ | IOMMU_WRITE;
  302. if (dma_coherent)
  303. prot |= IOMMU_CACHE;
  304. switch (mtype) {
  305. case MEM_EVENT_RING:
  306. va = IOVA_BASE;
  307. /* er already mapped */
  308. if (uaudio_qdev->er_mapped)
  309. map = false;
  310. break;
  311. case MEM_XFER_RING:
  312. va = uaudio_get_iova(&uaudio_qdev->curr_xfer_ring_iova,
  313. &uaudio_qdev->xfer_ring_iova_size, &uaudio_qdev->xfer_ring_list,
  314. size);
  315. break;
  316. case MEM_XFER_BUF:
  317. va = uaudio_get_iova(&uaudio_qdev->curr_xfer_buf_iova,
  318. &uaudio_qdev->xfer_buf_iova_size, &uaudio_qdev->xfer_buf_list,
  319. size);
  320. break;
  321. default:
  322. uaudio_err("unknown mem type %d\n", mtype);
  323. }
  324. if (!va || !map)
  325. goto done;
  326. if (!sgt)
  327. goto skip_sgt_map;
  328. va_sg = va;
  329. for_each_sg(sgt->sgl, sg, sgt->nents, i) {
  330. sg_len = PAGE_ALIGN(sg->offset + sg->length);
  331. pa_sg = page_to_phys(sg_page(sg));
  332. ret = iommu_map(uaudio_qdev->domain, va_sg, pa_sg, sg_len,
  333. prot);
  334. if (ret) {
  335. uaudio_err("mapping failed ret%d\n", ret);
  336. uaudio_err("type:%d, pa:%pa iova:0x%08lx sg_len:%zu\n",
  337. mtype, &pa_sg, va_sg, sg_len);
  338. uaudio_iommu_unmap(MEM_XFER_BUF, va, size, total_len);
  339. va = 0;
  340. goto done;
  341. }
  342. uaudio_dbg("type:%d map pa:%pa to iova:0x%08lx len:%zu offset:%u\n",
  343. mtype, &pa_sg, va_sg, sg_len, sg->offset);
  344. va_sg += sg_len;
  345. total_len += sg_len;
  346. }
  347. if (size != total_len) {
  348. uaudio_err("iova size %zu != mapped iova size %zu\n", size,
  349. total_len);
  350. uaudio_iommu_unmap(MEM_XFER_BUF, va, size, total_len);
  351. va = 0;
  352. }
  353. return va;
  354. skip_sgt_map:
  355. uaudio_dbg("type:%d map pa:%pa to iova:0x%08lx size:%zu\n", mtype, &pa,
  356. va, size);
  357. ret = iommu_map(uaudio_qdev->domain, va, pa, size, prot);
  358. if (ret)
  359. uaudio_err("failed to map pa:%pa iova:0x%lx type:%d ret:%d\n",
  360. &pa, va, mtype, ret);
  361. done:
  362. return va;
  363. }
  364. static void uaudio_put_iova(unsigned long va, size_t size, struct list_head
  365. *head, size_t *curr_iova_size)
  366. {
  367. struct iova_info *info;
  368. size_t tmp_size = size;
  369. bool found = false;
  370. list_for_each_entry(info, head, list) {
  371. if (info->start_iova == va) {
  372. if (!info->in_use) {
  373. uaudio_err("va %lu is not in use\n", va);
  374. return;
  375. }
  376. found = true;
  377. info->in_use = false;
  378. if (info->size == size)
  379. goto done;
  380. }
  381. if (found && tmp_size >= info->size) {
  382. info->in_use = false;
  383. tmp_size -= info->size;
  384. if (!tmp_size)
  385. goto done;
  386. }
  387. }
  388. if (!found) {
  389. uaudio_err("unable to find the va %lu\n", va);
  390. return;
  391. }
  392. done:
  393. *curr_iova_size += size;
  394. uaudio_dbg("curr_iova_size %zu\n", *curr_iova_size);
  395. }
  396. static void uaudio_iommu_unmap(enum mem_type mtype, unsigned long va,
  397. size_t iova_size, size_t mapped_iova_size)
  398. {
  399. size_t umap_size;
  400. bool unmap = true;
  401. if (!va || !iova_size)
  402. return;
  403. switch (mtype) {
  404. case MEM_EVENT_RING:
  405. if (uaudio_qdev->er_mapped)
  406. uaudio_qdev->er_mapped = false;
  407. else
  408. unmap = false;
  409. break;
  410. case MEM_XFER_RING:
  411. uaudio_put_iova(va, iova_size, &uaudio_qdev->xfer_ring_list,
  412. &uaudio_qdev->xfer_ring_iova_size);
  413. break;
  414. case MEM_XFER_BUF:
  415. uaudio_put_iova(va, iova_size, &uaudio_qdev->xfer_buf_list,
  416. &uaudio_qdev->xfer_buf_iova_size);
  417. break;
  418. default:
  419. uaudio_err("unknown mem type %d\n", mtype);
  420. unmap = false;
  421. }
  422. if (!unmap || !mapped_iova_size)
  423. return;
  424. uaudio_dbg("type %d: unmap iova 0x%08lx size %zu\n", mtype, va,
  425. mapped_iova_size);
  426. umap_size = iommu_unmap(uaudio_qdev->domain, va, mapped_iova_size);
  427. if (umap_size != mapped_iova_size)
  428. uaudio_err("unmapped size %zu for iova 0x%08lx of mapped size %zu\n",
  429. umap_size, va, mapped_iova_size);
  430. }
  431. /* looks up alias, if any, for controller DT node and returns the index */
  432. static int usb_get_controller_id(struct usb_device *udev)
  433. {
  434. if (udev->bus->sysdev && udev->bus->sysdev->of_node)
  435. return of_alias_get_id(udev->bus->sysdev->of_node, "usb");
  436. return -ENODEV;
  437. }
  438. static void *find_csint_desc(unsigned char *descstart, int desclen, u8 dsubtype)
  439. {
  440. u8 *p, *end, *next;
  441. p = descstart;
  442. end = p + desclen;
  443. while (p < end) {
  444. if (p[0] < 2)
  445. return NULL;
  446. next = p + p[0];
  447. if (next > end)
  448. return NULL;
  449. if (p[1] == USB_DT_CS_INTERFACE && p[2] == dsubtype)
  450. return p;
  451. p = next;
  452. }
  453. return NULL;
  454. }
  455. static int prepare_qmi_response(struct snd_usb_substream *subs,
  456. struct qmi_uaudio_stream_req_msg_v01 *req_msg,
  457. struct qmi_uaudio_stream_resp_msg_v01 *resp, int info_idx)
  458. {
  459. struct usb_interface *iface;
  460. struct usb_host_interface *alts;
  461. struct usb_interface_descriptor *altsd;
  462. struct usb_interface_assoc_descriptor *assoc;
  463. struct usb_host_endpoint *ep;
  464. struct uac_format_type_i_continuous_descriptor *fmt;
  465. struct uac_format_type_i_discrete_descriptor *fmt_v1;
  466. struct uac_format_type_i_ext_descriptor *fmt_v2;
  467. struct uac1_as_header_descriptor *as;
  468. int ret;
  469. int protocol, card_num, pcm_dev_num;
  470. void *hdr_ptr;
  471. u8 *xfer_buf;
  472. unsigned int data_ep_pipe = 0, sync_ep_pipe = 0;
  473. u32 len, mult, remainder, xfer_buf_len;
  474. unsigned long va, tr_data_va = 0, tr_sync_va = 0;
  475. phys_addr_t xhci_pa, xfer_buf_pa, tr_data_pa = 0, tr_sync_pa = 0;
  476. dma_addr_t dma;
  477. struct sg_table sgt;
  478. bool dma_coherent;
  479. iface = usb_ifnum_to_if(subs->dev, subs->cur_audiofmt->iface);
  480. if (!iface) {
  481. uaudio_err("interface # %d does not exist\n", subs->cur_audiofmt->iface);
  482. ret = -ENODEV;
  483. goto err;
  484. }
  485. assoc = iface->intf_assoc;
  486. pcm_dev_num = (req_msg->usb_token & SND_PCM_DEV_NUM_MASK) >> 8;
  487. card_num = (req_msg->usb_token & SND_PCM_CARD_NUM_MASK) >> 16;
  488. xfer_buf_len = req_msg->xfer_buff_size;
  489. alts = &iface->altsetting[subs->cur_audiofmt->altset_idx];
  490. altsd = get_iface_desc(alts);
  491. protocol = altsd->bInterfaceProtocol;
  492. /* get format type */
  493. if (protocol != UAC_VERSION_3) {
  494. fmt = find_csint_desc(alts->extra, alts->extralen,
  495. UAC_FORMAT_TYPE);
  496. if (!fmt) {
  497. uaudio_err("%u:%d : no UAC_FORMAT_TYPE desc\n",
  498. subs->cur_audiofmt->iface,
  499. subs->cur_audiofmt->altset_idx);
  500. ret = -ENODEV;
  501. goto err;
  502. }
  503. }
  504. if (!uadev[card_num].ctrl_intf) {
  505. uaudio_err("audio ctrl intf info not cached\n");
  506. ret = -ENODEV;
  507. goto err;
  508. }
  509. if (protocol != UAC_VERSION_3) {
  510. hdr_ptr = find_csint_desc(uadev[card_num].ctrl_intf->extra,
  511. uadev[card_num].ctrl_intf->extralen,
  512. UAC_HEADER);
  513. if (!hdr_ptr) {
  514. uaudio_err("no UAC_HEADER desc\n");
  515. ret = -ENODEV;
  516. goto err;
  517. }
  518. }
  519. if (protocol == UAC_VERSION_1) {
  520. struct uac1_ac_header_descriptor *uac1_hdr = hdr_ptr;
  521. as = find_csint_desc(alts->extra, alts->extralen,
  522. UAC_AS_GENERAL);
  523. if (!as) {
  524. uaudio_err("%u:%d : no UAC_AS_GENERAL desc\n",
  525. subs->cur_audiofmt->iface,
  526. subs->cur_audiofmt->altset_idx);
  527. ret = -ENODEV;
  528. goto err;
  529. }
  530. resp->data_path_delay = as->bDelay;
  531. resp->data_path_delay_valid = 1;
  532. fmt_v1 = (struct uac_format_type_i_discrete_descriptor *)fmt;
  533. resp->usb_audio_subslot_size = fmt_v1->bSubframeSize;
  534. resp->usb_audio_subslot_size_valid = 1;
  535. resp->usb_audio_spec_revision = le16_to_cpu(uac1_hdr->bcdADC);
  536. resp->usb_audio_spec_revision_valid = 1;
  537. } else if (protocol == UAC_VERSION_2) {
  538. struct uac2_ac_header_descriptor *uac2_hdr = hdr_ptr;
  539. fmt_v2 = (struct uac_format_type_i_ext_descriptor *)fmt;
  540. resp->usb_audio_subslot_size = fmt_v2->bSubslotSize;
  541. resp->usb_audio_subslot_size_valid = 1;
  542. resp->usb_audio_spec_revision = le16_to_cpu(uac2_hdr->bcdADC);
  543. resp->usb_audio_spec_revision_valid = 1;
  544. } else if (protocol == UAC_VERSION_3) {
  545. if (assoc->bFunctionSubClass ==
  546. UAC3_FUNCTION_SUBCLASS_FULL_ADC_3_0) {
  547. uaudio_err("full adc is not supported\n");
  548. ret = -EINVAL;
  549. }
  550. switch (le16_to_cpu(get_endpoint(alts, 0)->wMaxPacketSize)) {
  551. case UAC3_BADD_EP_MAXPSIZE_SYNC_MONO_16:
  552. case UAC3_BADD_EP_MAXPSIZE_SYNC_STEREO_16:
  553. case UAC3_BADD_EP_MAXPSIZE_ASYNC_MONO_16:
  554. case UAC3_BADD_EP_MAXPSIZE_ASYNC_STEREO_16: {
  555. resp->usb_audio_subslot_size = 0x2;
  556. break;
  557. }
  558. case UAC3_BADD_EP_MAXPSIZE_SYNC_MONO_24:
  559. case UAC3_BADD_EP_MAXPSIZE_SYNC_STEREO_24:
  560. case UAC3_BADD_EP_MAXPSIZE_ASYNC_MONO_24:
  561. case UAC3_BADD_EP_MAXPSIZE_ASYNC_STEREO_24: {
  562. resp->usb_audio_subslot_size = 0x3;
  563. break;
  564. }
  565. default:
  566. uaudio_err("%d: %u: Invalid wMaxPacketSize\n",
  567. subs->cur_audiofmt->iface,
  568. subs->cur_audiofmt->altset_idx);
  569. ret = -EINVAL;
  570. goto err;
  571. }
  572. resp->usb_audio_subslot_size_valid = 1;
  573. } else {
  574. uaudio_err("unknown protocol version %x\n", protocol);
  575. ret = -ENODEV;
  576. goto err;
  577. }
  578. resp->slot_id = subs->dev->slot_id;
  579. resp->slot_id_valid = 1;
  580. memcpy(&resp->std_as_opr_intf_desc, &alts->desc, sizeof(alts->desc));
  581. resp->std_as_opr_intf_desc_valid = 1;
  582. ep = usb_pipe_endpoint(subs->dev, subs->data_endpoint->pipe);
  583. if (!ep) {
  584. uaudio_err("data ep # %d context is null\n",
  585. subs->data_endpoint->ep_num);
  586. ret = -ENODEV;
  587. goto err;
  588. }
  589. data_ep_pipe = subs->data_endpoint->pipe;
  590. memcpy(&resp->std_as_data_ep_desc, &ep->desc, sizeof(ep->desc));
  591. resp->std_as_data_ep_desc_valid = 1;
  592. tr_data_pa = xhci_get_xfer_ring_phys_addr(subs->dev, ep, &dma);
  593. if (!tr_data_pa) {
  594. uaudio_err("failed to get data ep ring dma address\n");
  595. ret = -ENODEV;
  596. goto err;
  597. }
  598. resp->xhci_mem_info.tr_data.pa = dma;
  599. if (subs->sync_endpoint) {
  600. ep = usb_pipe_endpoint(subs->dev, subs->sync_endpoint->pipe);
  601. if (!ep) {
  602. uaudio_dbg("implicit fb on data ep\n");
  603. goto skip_sync_ep;
  604. }
  605. sync_ep_pipe = subs->sync_endpoint->pipe;
  606. memcpy(&resp->std_as_sync_ep_desc, &ep->desc, sizeof(ep->desc));
  607. resp->std_as_sync_ep_desc_valid = 1;
  608. tr_sync_pa = xhci_get_xfer_ring_phys_addr(subs->dev, ep, &dma);
  609. if (!tr_sync_pa) {
  610. uaudio_err("failed to get sync ep ring dma address\n");
  611. ret = -ENODEV;
  612. goto err;
  613. }
  614. resp->xhci_mem_info.tr_sync.pa = dma;
  615. }
  616. skip_sync_ep:
  617. resp->interrupter_num = uaudio_qdev->intr_num;
  618. resp->interrupter_num_valid = 1;
  619. resp->controller_num_valid = 0;
  620. ret = usb_get_controller_id(subs->dev);
  621. if (ret >= 0) {
  622. resp->controller_num = ret;
  623. resp->controller_num_valid = 1;
  624. }
  625. /* map xhci data structures PA memory to iova */
  626. dma_coherent = dev_is_dma_coherent(subs->dev->bus->sysdev);
  627. /* event ring */
  628. uaudio_qdev->sec_ring = xhci_sec_event_ring_setup(subs->dev, resp->interrupter_num);
  629. if (IS_ERR(uaudio_qdev->sec_ring)) {
  630. ret = PTR_ERR(uaudio_qdev->sec_ring);
  631. uaudio_err("failed to setup sec event ring ret %d\n", ret);
  632. goto err;
  633. }
  634. xhci_pa = xhci_get_sec_event_ring_phys_addr(subs->dev,
  635. uaudio_qdev->sec_ring, &dma);
  636. if (!xhci_pa) {
  637. uaudio_err("failed to get sec event ring dma address\n");
  638. ret = -ENODEV;
  639. goto free_sec_ring;
  640. }
  641. va = uaudio_iommu_map(MEM_EVENT_RING, dma_coherent, xhci_pa, PAGE_SIZE,
  642. NULL);
  643. if (!va) {
  644. ret = -ENOMEM;
  645. goto free_sec_ring;
  646. }
  647. resp->xhci_mem_info.evt_ring.va = PREPEND_SID_TO_IOVA(va,
  648. uaudio_qdev->sid);
  649. resp->xhci_mem_info.evt_ring.pa = dma;
  650. resp->xhci_mem_info.evt_ring.size = PAGE_SIZE;
  651. uaudio_qdev->er_mapped = true;
  652. resp->speed_info = get_speed_info(subs->dev->speed);
  653. if (resp->speed_info == USB_AUDIO_DEVICE_SPEED_INVALID_V01) {
  654. ret = -ENODEV;
  655. goto unmap_er;
  656. }
  657. resp->speed_info_valid = 1;
  658. /* data transfer ring */
  659. va = uaudio_iommu_map(MEM_XFER_RING, dma_coherent, tr_data_pa,
  660. PAGE_SIZE, NULL);
  661. if (!va) {
  662. ret = -ENOMEM;
  663. goto unmap_er;
  664. }
  665. tr_data_va = va;
  666. resp->xhci_mem_info.tr_data.va = PREPEND_SID_TO_IOVA(va,
  667. uaudio_qdev->sid);
  668. resp->xhci_mem_info.tr_data.size = PAGE_SIZE;
  669. /* sync transfer ring */
  670. if (!resp->xhci_mem_info.tr_sync.pa)
  671. goto skip_sync;
  672. xhci_pa = resp->xhci_mem_info.tr_sync.pa;
  673. va = uaudio_iommu_map(MEM_XFER_RING, dma_coherent, tr_sync_pa,
  674. PAGE_SIZE, NULL);
  675. if (!va) {
  676. ret = -ENOMEM;
  677. goto unmap_data;
  678. }
  679. tr_sync_va = va;
  680. resp->xhci_mem_info.tr_sync.va = PREPEND_SID_TO_IOVA(va,
  681. uaudio_qdev->sid);
  682. resp->xhci_mem_info.tr_sync.size = PAGE_SIZE;
  683. skip_sync:
  684. /* xfer buffer, multiple of 4K only */
  685. if (!xfer_buf_len)
  686. xfer_buf_len = PAGE_SIZE;
  687. mult = xfer_buf_len / PAGE_SIZE;
  688. remainder = xfer_buf_len % PAGE_SIZE;
  689. len = mult * PAGE_SIZE;
  690. len += remainder ? PAGE_SIZE : 0;
  691. if (len > MAX_XFER_BUFF_LEN) {
  692. uaudio_err("req buf len %d > max buf len %lu, setting %lu\n",
  693. len, MAX_XFER_BUFF_LEN, MAX_XFER_BUFF_LEN);
  694. len = MAX_XFER_BUFF_LEN;
  695. }
  696. xfer_buf = usb_alloc_coherent(subs->dev, len, GFP_KERNEL, &xfer_buf_pa);
  697. if (!xfer_buf) {
  698. ret = -ENOMEM;
  699. goto unmap_sync;
  700. }
  701. dma_get_sgtable(subs->dev->bus->sysdev, &sgt, xfer_buf, xfer_buf_pa,
  702. len);
  703. va = uaudio_iommu_map(MEM_XFER_BUF, dma_coherent, xfer_buf_pa, len,
  704. &sgt);
  705. if (!va) {
  706. ret = -ENOMEM;
  707. goto unmap_sync;
  708. }
  709. resp->xhci_mem_info.xfer_buff.pa = xfer_buf_pa;
  710. resp->xhci_mem_info.xfer_buff.size = len;
  711. resp->xhci_mem_info.xfer_buff.va = PREPEND_SID_TO_IOVA(va,
  712. uaudio_qdev->sid);
  713. resp->xhci_mem_info_valid = 1;
  714. sg_free_table(&sgt);
  715. if (!atomic_read(&uadev[card_num].in_use)) {
  716. kref_init(&uadev[card_num].kref);
  717. init_waitqueue_head(&uadev[card_num].disconnect_wq);
  718. uadev[card_num].num_intf =
  719. subs->dev->config->desc.bNumInterfaces;
  720. uadev[card_num].info = kcalloc(uadev[card_num].num_intf,
  721. sizeof(struct intf_info), GFP_KERNEL);
  722. if (!uadev[card_num].info) {
  723. ret = -ENOMEM;
  724. goto unmap_sync;
  725. }
  726. uadev[card_num].udev = subs->dev;
  727. atomic_set(&uadev[card_num].in_use, 1);
  728. } else {
  729. kref_get(&uadev[card_num].kref);
  730. }
  731. uadev[card_num].card_num = card_num;
  732. uadev[card_num].usb_core_id = resp->controller_num;
  733. /* cache intf specific info to use it for unmap and free xfer buf */
  734. uadev[card_num].info[info_idx].data_xfer_ring_va = tr_data_va;
  735. uadev[card_num].info[info_idx].data_xfer_ring_size = PAGE_SIZE;
  736. uadev[card_num].info[info_idx].sync_xfer_ring_va = tr_sync_va;
  737. uadev[card_num].info[info_idx].sync_xfer_ring_size = PAGE_SIZE;
  738. uadev[card_num].info[info_idx].xfer_buf_va = va;
  739. uadev[card_num].info[info_idx].xfer_buf_pa = xfer_buf_pa;
  740. uadev[card_num].info[info_idx].xfer_buf_size = len;
  741. uadev[card_num].info[info_idx].data_ep_pipe = data_ep_pipe;
  742. uadev[card_num].info[info_idx].sync_ep_pipe = sync_ep_pipe;
  743. uadev[card_num].info[info_idx].xfer_buf = xfer_buf;
  744. uadev[card_num].info[info_idx].pcm_card_num = card_num;
  745. uadev[card_num].info[info_idx].pcm_dev_num = pcm_dev_num;
  746. uadev[card_num].info[info_idx].direction = subs->direction;
  747. uadev[card_num].info[info_idx].intf_num = subs->cur_audiofmt->iface;
  748. uadev[card_num].info[info_idx].in_use = true;
  749. set_bit(card_num, &uaudio_qdev->card_slot);
  750. return 0;
  751. unmap_sync:
  752. usb_free_coherent(subs->dev, len, xfer_buf, xfer_buf_pa);
  753. uaudio_iommu_unmap(MEM_XFER_RING, tr_sync_va, PAGE_SIZE, PAGE_SIZE);
  754. unmap_data:
  755. uaudio_iommu_unmap(MEM_XFER_RING, tr_data_va, PAGE_SIZE, PAGE_SIZE);
  756. unmap_er:
  757. uaudio_iommu_unmap(MEM_EVENT_RING, IOVA_BASE, PAGE_SIZE, PAGE_SIZE);
  758. free_sec_ring:
  759. xhci_sec_event_ring_cleanup(subs->dev, uaudio_qdev->sec_ring);
  760. err:
  761. return ret;
  762. }
  763. static void uaudio_dev_intf_cleanup(struct usb_device *udev,
  764. struct intf_info *info)
  765. {
  766. if (!info) {
  767. uaudio_err("info is NULL\n");
  768. return;
  769. }
  770. uaudio_iommu_unmap(MEM_XFER_RING, info->data_xfer_ring_va,
  771. info->data_xfer_ring_size, info->data_xfer_ring_size);
  772. info->data_xfer_ring_va = 0;
  773. info->data_xfer_ring_size = 0;
  774. uaudio_iommu_unmap(MEM_XFER_RING, info->sync_xfer_ring_va,
  775. info->sync_xfer_ring_size, info->sync_xfer_ring_size);
  776. info->sync_xfer_ring_va = 0;
  777. info->sync_xfer_ring_size = 0;
  778. uaudio_iommu_unmap(MEM_XFER_BUF, info->xfer_buf_va,
  779. info->xfer_buf_size, info->xfer_buf_size);
  780. info->xfer_buf_va = 0;
  781. usb_free_coherent(udev, info->xfer_buf_size,
  782. info->xfer_buf, info->xfer_buf_pa);
  783. info->xfer_buf_size = 0;
  784. info->xfer_buf = NULL;
  785. info->xfer_buf_pa = 0;
  786. info->in_use = false;
  787. }
  788. static void uaudio_event_ring_cleanup_free(struct uaudio_dev *dev)
  789. {
  790. clear_bit(dev->card_num, &uaudio_qdev->card_slot);
  791. /* all audio devices are disconnected */
  792. if (!uaudio_qdev->card_slot) {
  793. uaudio_iommu_unmap(MEM_EVENT_RING, IOVA_BASE, PAGE_SIZE,
  794. PAGE_SIZE);
  795. xhci_sec_event_ring_cleanup(dev->udev, uaudio_qdev->sec_ring);
  796. uaudio_dbg("all audio devices disconnected\n");
  797. }
  798. }
  799. static void uaudio_dev_cleanup(struct uaudio_dev *dev)
  800. {
  801. int if_idx;
  802. if (!dev->udev) {
  803. uaudio_dbg("USB audio device memory is already freed.\n");
  804. return;
  805. }
  806. /* free xfer buffer and unmap xfer ring and buf per interface */
  807. for (if_idx = 0; if_idx < dev->num_intf; if_idx++) {
  808. if (!dev->info[if_idx].in_use)
  809. continue;
  810. uaudio_dev_intf_cleanup(dev->udev, &dev->info[if_idx]);
  811. uaudio_dbg("release resources: intf# %d card# %d\n",
  812. dev->info[if_idx].intf_num, dev->card_num);
  813. }
  814. dev->num_intf = 0;
  815. /* free interface info */
  816. kfree(dev->info);
  817. dev->info = NULL;
  818. uaudio_event_ring_cleanup_free(dev);
  819. dev->udev = NULL;
  820. }
  821. static void uaudio_connect(void *unused, struct usb_interface *intf,
  822. struct snd_usb_audio *chip)
  823. {
  824. uaudio_dbg("intf: %s: %p chip: %p card_number:%d\n",
  825. dev_name(&intf->dev), intf, chip, chip->card->number);
  826. if (chip->card->number >= SNDRV_CARDS) {
  827. uaudio_err("Invalid card number\n");
  828. return;
  829. }
  830. uadev[chip->card->number].chip = chip;
  831. }
  832. static void uaudio_disconnect(void *unused, struct usb_interface *intf)
  833. {
  834. int ret;
  835. struct snd_usb_audio *chip = usb_get_intfdata(intf);
  836. struct uaudio_dev *dev;
  837. int card_num;
  838. struct uaudio_qmi_svc *svc = uaudio_svc;
  839. struct qmi_uaudio_stream_ind_msg_v01 disconnect_ind = {0};
  840. if (!chip) {
  841. uaudio_err("chip is NULL\n");
  842. return;
  843. }
  844. card_num = chip->card->number;
  845. uaudio_dbg("intf: %s: %p chip: %p card: %d\n", dev_name(&intf->dev),
  846. intf, chip, card_num);
  847. if (card_num >= SNDRV_CARDS) {
  848. uaudio_err("invalid card number\n");
  849. return;
  850. }
  851. mutex_lock(&chip->mutex);
  852. dev = &uadev[card_num];
  853. /* clean up */
  854. if (!dev->udev) {
  855. uaudio_dbg("no clean up required\n");
  856. goto done;
  857. }
  858. if (atomic_read(&dev->in_use)) {
  859. mutex_unlock(&chip->mutex);
  860. uaudio_dbg("sending qmi indication disconnect\n");
  861. uaudio_dbg("sq->sq_family:%x sq->sq_node:%x sq->sq_port:%x\n",
  862. svc->client_sq.sq_family,
  863. svc->client_sq.sq_node, svc->client_sq.sq_port);
  864. disconnect_ind.dev_event = USB_AUDIO_DEV_DISCONNECT_V01;
  865. disconnect_ind.slot_id = dev->udev->slot_id;
  866. disconnect_ind.controller_num = dev->usb_core_id;
  867. disconnect_ind.controller_num_valid = 1;
  868. ret = qmi_send_indication(svc->uaudio_svc_hdl, &svc->client_sq,
  869. QMI_UAUDIO_STREAM_IND_V01,
  870. QMI_UAUDIO_STREAM_IND_MSG_V01_MAX_MSG_LEN,
  871. qmi_uaudio_stream_ind_msg_v01_ei,
  872. &disconnect_ind);
  873. if (ret < 0)
  874. uaudio_err("qmi send failed with err: %d\n", ret);
  875. ret = wait_event_interruptible_timeout(dev->disconnect_wq,
  876. !atomic_read(&dev->in_use),
  877. msecs_to_jiffies(DEV_RELEASE_WAIT_TIMEOUT));
  878. if (!ret) {
  879. uaudio_err("timeout while waiting for dev_release\n");
  880. atomic_set(&dev->in_use, 0);
  881. } else if (ret < 0) {
  882. uaudio_err("failed with ret %d\n", ret);
  883. atomic_set(&dev->in_use, 0);
  884. }
  885. mutex_lock(&chip->mutex);
  886. }
  887. uaudio_dev_cleanup(dev);
  888. done:
  889. mutex_unlock(&chip->mutex);
  890. uadev[card_num].chip = NULL;
  891. }
  892. static void uaudio_dev_release(struct kref *kref)
  893. {
  894. struct uaudio_dev *dev = container_of(kref, struct uaudio_dev, kref);
  895. uaudio_dbg("for dev %pK\n", dev);
  896. uaudio_event_ring_cleanup_free(dev);
  897. atomic_set(&dev->in_use, 0);
  898. wake_up(&dev->disconnect_wq);
  899. }
  900. /* maps audio format received over QMI to asound.h based pcm format */
  901. static snd_pcm_format_t map_pcm_format(enum usb_qmi_audio_format fmt_received)
  902. {
  903. switch (fmt_received) {
  904. case USB_QMI_PCM_FORMAT_S8:
  905. return SNDRV_PCM_FORMAT_S8;
  906. case USB_QMI_PCM_FORMAT_U8:
  907. return SNDRV_PCM_FORMAT_U8;
  908. case USB_QMI_PCM_FORMAT_S16_LE:
  909. return SNDRV_PCM_FORMAT_S16_LE;
  910. case USB_QMI_PCM_FORMAT_S16_BE:
  911. return SNDRV_PCM_FORMAT_S16_BE;
  912. case USB_QMI_PCM_FORMAT_U16_LE:
  913. return SNDRV_PCM_FORMAT_U16_LE;
  914. case USB_QMI_PCM_FORMAT_U16_BE:
  915. return SNDRV_PCM_FORMAT_U16_BE;
  916. case USB_QMI_PCM_FORMAT_S24_LE:
  917. return SNDRV_PCM_FORMAT_S24_LE;
  918. case USB_QMI_PCM_FORMAT_S24_BE:
  919. return SNDRV_PCM_FORMAT_S24_BE;
  920. case USB_QMI_PCM_FORMAT_U24_LE:
  921. return SNDRV_PCM_FORMAT_U24_LE;
  922. case USB_QMI_PCM_FORMAT_U24_BE:
  923. return SNDRV_PCM_FORMAT_U24_BE;
  924. case USB_QMI_PCM_FORMAT_S24_3LE:
  925. return SNDRV_PCM_FORMAT_S24_3LE;
  926. case USB_QMI_PCM_FORMAT_S24_3BE:
  927. return SNDRV_PCM_FORMAT_S24_3BE;
  928. case USB_QMI_PCM_FORMAT_U24_3LE:
  929. return SNDRV_PCM_FORMAT_U24_3LE;
  930. case USB_QMI_PCM_FORMAT_U24_3BE:
  931. return SNDRV_PCM_FORMAT_U24_3BE;
  932. case USB_QMI_PCM_FORMAT_S32_LE:
  933. return SNDRV_PCM_FORMAT_S32_LE;
  934. case USB_QMI_PCM_FORMAT_S32_BE:
  935. return SNDRV_PCM_FORMAT_S32_BE;
  936. case USB_QMI_PCM_FORMAT_U32_LE:
  937. return SNDRV_PCM_FORMAT_U32_LE;
  938. case USB_QMI_PCM_FORMAT_U32_BE:
  939. return SNDRV_PCM_FORMAT_U32_BE;
  940. default:
  941. /*
  942. * We expect the caller to do input validation so we should
  943. * never hit this. But we do have to return a proper
  944. * snd_pcm_format_t value due to the __bitwise attribute; so
  945. * just return the equivalent of 0 in case of bad input.
  946. */
  947. return SNDRV_PCM_FORMAT_S8;
  948. }
  949. }
  950. static int info_idx_from_ifnum(int card_num, int intf_num, bool enable)
  951. {
  952. int i;
  953. /*
  954. * default index 0 is used when info is allocated upon
  955. * first enable audio stream req for a pcm device
  956. */
  957. if (enable && !uadev[card_num].info)
  958. return 0;
  959. for (i = 0; i < uadev[card_num].num_intf; i++) {
  960. if (enable && !uadev[card_num].info[i].in_use)
  961. return i;
  962. else if (!enable &&
  963. uadev[card_num].info[i].intf_num == intf_num)
  964. return i;
  965. }
  966. return -EINVAL;
  967. }
  968. static int get_data_interval_from_si(struct snd_usb_substream *subs,
  969. u32 service_interval)
  970. {
  971. unsigned int bus_intval, bus_intval_mult, binterval;
  972. if (subs->dev->speed >= USB_SPEED_HIGH)
  973. bus_intval = BUS_INTERVAL_HIGHSPEED_AND_ABOVE;
  974. else
  975. bus_intval = BUS_INTERVAL_FULL_SPEED;
  976. if (service_interval % bus_intval)
  977. return -EINVAL;
  978. bus_intval_mult = service_interval / bus_intval;
  979. binterval = ffs(bus_intval_mult);
  980. if (!binterval || binterval > MAX_BINTERVAL_ISOC_EP)
  981. return -EINVAL;
  982. /* check if another bit is set then bail out */
  983. bus_intval_mult = bus_intval_mult >> binterval;
  984. if (bus_intval_mult)
  985. return -EINVAL;
  986. return (binterval - 1);
  987. }
  988. static struct snd_usb_substream *find_substream(unsigned int card_num,
  989. unsigned int pcm_idx, unsigned int direction)
  990. {
  991. struct snd_usb_stream *as;
  992. struct snd_usb_substream *subs = NULL;
  993. struct snd_usb_audio *chip;
  994. chip = uadev[card_num].chip;
  995. if (!chip || atomic_read(&chip->shutdown)) {
  996. pr_debug("%s: instance of usb card # %d does not exist\n",
  997. __func__, card_num);
  998. goto err;
  999. }
  1000. if (pcm_idx >= chip->pcm_devs) {
  1001. pr_err("%s: invalid pcm dev number %u > %d\n", __func__,
  1002. pcm_idx, chip->pcm_devs);
  1003. goto err;
  1004. }
  1005. if (direction > SNDRV_PCM_STREAM_CAPTURE) {
  1006. pr_err("%s: invalid direction %u\n", __func__, direction);
  1007. goto err;
  1008. }
  1009. list_for_each_entry(as, &chip->pcm_list, list) {
  1010. if (as->pcm_index == pcm_idx) {
  1011. subs = &as->substream[direction];
  1012. goto done;
  1013. }
  1014. }
  1015. done:
  1016. err:
  1017. if (!subs)
  1018. pr_debug("%s: substream instance not found\n", __func__);
  1019. return subs;
  1020. }
  1021. static const struct audioformat *
  1022. find_format_and_si(struct list_head *fmt_list_head, snd_pcm_format_t format,
  1023. unsigned int rate, unsigned int channels, unsigned int datainterval,
  1024. struct snd_usb_substream *subs)
  1025. {
  1026. const struct audioformat *fp;
  1027. const struct audioformat *found = NULL;
  1028. int cur_attr = 0, attr;
  1029. list_for_each_entry(fp, fmt_list_head, list) {
  1030. if (datainterval != -EINVAL && datainterval != fp->datainterval)
  1031. continue;
  1032. if (!(fp->formats & pcm_format_to_bits(format)))
  1033. continue;
  1034. if (fp->channels != channels)
  1035. continue;
  1036. if (rate < fp->rate_min || rate > fp->rate_max)
  1037. continue;
  1038. if (!(fp->rates & SNDRV_PCM_RATE_CONTINUOUS)) {
  1039. unsigned int i;
  1040. for (i = 0; i < fp->nr_rates; i++)
  1041. if (fp->rate_table[i] == rate)
  1042. break;
  1043. if (i >= fp->nr_rates)
  1044. continue;
  1045. }
  1046. attr = fp->ep_attr & USB_ENDPOINT_SYNCTYPE;
  1047. if (!found) {
  1048. found = fp;
  1049. cur_attr = attr;
  1050. continue;
  1051. }
  1052. /* avoid async out and adaptive in if the other method
  1053. * supports the same format.
  1054. * this is a workaround for the case like
  1055. * M-audio audiophile USB.
  1056. */
  1057. if (subs && attr != cur_attr) {
  1058. if ((attr == USB_ENDPOINT_SYNC_ASYNC &&
  1059. subs->direction == SNDRV_PCM_STREAM_PLAYBACK) ||
  1060. (attr == USB_ENDPOINT_SYNC_ADAPTIVE &&
  1061. subs->direction == SNDRV_PCM_STREAM_CAPTURE))
  1062. continue;
  1063. if ((cur_attr == USB_ENDPOINT_SYNC_ASYNC &&
  1064. subs->direction == SNDRV_PCM_STREAM_PLAYBACK) ||
  1065. (cur_attr == USB_ENDPOINT_SYNC_ADAPTIVE &&
  1066. subs->direction == SNDRV_PCM_STREAM_CAPTURE)) {
  1067. found = fp;
  1068. cur_attr = attr;
  1069. continue;
  1070. }
  1071. }
  1072. /* find the format with the largest max. packet size */
  1073. if (fp->maxpacksize > found->maxpacksize) {
  1074. found = fp;
  1075. cur_attr = attr;
  1076. }
  1077. }
  1078. return found;
  1079. }
  1080. static void close_endpoints(struct snd_usb_audio *chip,
  1081. struct snd_usb_substream *subs)
  1082. {
  1083. if (subs->data_endpoint) {
  1084. subs->data_endpoint->sync_source = NULL;
  1085. snd_usb_endpoint_close(chip, subs->data_endpoint);
  1086. subs->data_endpoint = NULL;
  1087. }
  1088. if (subs->sync_endpoint) {
  1089. snd_usb_endpoint_close(chip, subs->sync_endpoint);
  1090. subs->sync_endpoint = NULL;
  1091. }
  1092. }
  1093. static int configure_endpoints(struct snd_usb_audio *chip,
  1094. struct snd_usb_substream *subs)
  1095. {
  1096. int err;
  1097. if (subs->data_endpoint->need_setup) {
  1098. err = snd_usb_endpoint_prepare(chip, subs->data_endpoint);
  1099. if (err < 0) {
  1100. uaudio_err("failed to configure data endpoint\n");
  1101. return err;
  1102. }
  1103. }
  1104. if (subs->sync_endpoint) {
  1105. err = snd_usb_endpoint_prepare(chip, subs->sync_endpoint);
  1106. if (err < 0) {
  1107. uaudio_err("failed to configure endpoint\n");
  1108. return err;
  1109. }
  1110. }
  1111. return 0;
  1112. }
  1113. static int snd_interval_refine_set(struct snd_interval *i, unsigned int val)
  1114. {
  1115. struct snd_interval t;
  1116. t.empty = 0;
  1117. t.min = t.max = val;
  1118. t.openmin = t.openmax = 0;
  1119. t.integer = 1;
  1120. return snd_interval_refine(i, &t);
  1121. }
  1122. static int _snd_pcm_hw_param_set(struct snd_pcm_hw_params *params,
  1123. snd_pcm_hw_param_t var, unsigned int val,
  1124. int dir)
  1125. {
  1126. int changed;
  1127. if (hw_is_mask(var)) {
  1128. struct snd_mask *m = hw_param_mask(params, var);
  1129. if (val == 0 && dir < 0) {
  1130. changed = -EINVAL;
  1131. snd_mask_none(m);
  1132. } else {
  1133. if (dir > 0)
  1134. val++;
  1135. else if (dir < 0)
  1136. val--;
  1137. changed = snd_mask_refine_set(
  1138. hw_param_mask(params, var), val);
  1139. }
  1140. } else if (hw_is_interval(var)) {
  1141. struct snd_interval *i = hw_param_interval(params, var);
  1142. if (val == 0 && dir < 0) {
  1143. changed = -EINVAL;
  1144. snd_interval_none(i);
  1145. } else if (dir == 0)
  1146. changed = snd_interval_refine_set(i, val);
  1147. else {
  1148. struct snd_interval t;
  1149. t.openmin = 1;
  1150. t.openmax = 1;
  1151. t.empty = 0;
  1152. t.integer = 0;
  1153. if (dir < 0) {
  1154. t.min = val - 1;
  1155. t.max = val;
  1156. } else {
  1157. t.min = val;
  1158. t.max = val+1;
  1159. }
  1160. changed = snd_interval_refine(i, &t);
  1161. }
  1162. } else
  1163. return -EINVAL;
  1164. if (changed) {
  1165. params->cmask |= 1 << var;
  1166. params->rmask |= 1 << var;
  1167. }
  1168. return changed;
  1169. }
  1170. bool _snd_usb_pcm_has_fixed_rate(struct snd_usb_substream *subs)
  1171. {
  1172. const struct audioformat *fp;
  1173. struct snd_usb_audio *chip;
  1174. int rate = -1;
  1175. if (!subs)
  1176. return false;
  1177. chip = subs->stream->chip;
  1178. if (!(chip->quirk_flags & QUIRK_FLAG_FIXED_RATE))
  1179. return false;
  1180. list_for_each_entry(fp, &subs->fmt_list, list) {
  1181. if (fp->rates & SNDRV_PCM_RATE_CONTINUOUS)
  1182. return false;
  1183. if (fp->nr_rates < 1)
  1184. continue;
  1185. if (fp->nr_rates > 1)
  1186. return false;
  1187. if (rate < 0) {
  1188. rate = fp->rate_table[0];
  1189. continue;
  1190. }
  1191. if (rate != fp->rate_table[0])
  1192. return false;
  1193. }
  1194. return true;
  1195. }
  1196. static void disable_audio_stream(struct snd_usb_substream *subs)
  1197. {
  1198. struct snd_usb_audio *chip = subs->stream->chip;
  1199. snd_usb_autoresume(chip);
  1200. if (subs->data_endpoint || subs->sync_endpoint) {
  1201. close_endpoints(chip, subs);
  1202. mutex_lock(&chip->mutex);
  1203. subs->cur_audiofmt = NULL;
  1204. mutex_unlock(&chip->mutex);
  1205. }
  1206. uaudio_qdev->active_idx--;
  1207. snd_usb_autosuspend(chip);
  1208. }
  1209. static int enable_audio_stream(struct snd_usb_substream *subs,
  1210. snd_pcm_format_t pcm_format,
  1211. unsigned int channels, unsigned int cur_rate,
  1212. int datainterval)
  1213. {
  1214. struct snd_usb_audio *chip = subs->stream->chip;
  1215. struct snd_pcm_hw_params params;
  1216. const struct audioformat *fmt;
  1217. int ret;
  1218. bool fixed_rate;
  1219. _snd_pcm_hw_params_any(&params);
  1220. _snd_pcm_hw_param_set(&params, SNDRV_PCM_HW_PARAM_FORMAT,
  1221. pcm_format, 0);
  1222. _snd_pcm_hw_param_set(&params, SNDRV_PCM_HW_PARAM_CHANNELS,
  1223. channels, 0);
  1224. _snd_pcm_hw_param_set(&params, SNDRV_PCM_HW_PARAM_RATE,
  1225. cur_rate, 0);
  1226. if (!chip->intf[0])
  1227. return -ENODEV;
  1228. pm_runtime_barrier(&chip->intf[0]->dev);
  1229. snd_usb_autoresume(chip);
  1230. ret = uaudio_snd_usb_pcm_change_state(subs, UAC3_PD_STATE_D0);
  1231. if (ret < 0)
  1232. goto exit;
  1233. fmt = find_format_and_si(&subs->fmt_list, pcm_format, cur_rate,
  1234. channels, datainterval, subs);
  1235. if (!fmt) {
  1236. dev_err(&subs->dev->dev, "cannot find format: format = %#x, rate = %d, channels = %d\n",
  1237. pcm_format, cur_rate, channels);
  1238. ret = -EINVAL;
  1239. goto exit;
  1240. }
  1241. if (atomic_read(&chip->shutdown)) {
  1242. uaudio_err("chip already shutdown\n");
  1243. ret = -ENODEV;
  1244. goto exit;
  1245. } else {
  1246. if (subs->data_endpoint)
  1247. close_endpoints(chip, subs);
  1248. fixed_rate = _snd_usb_pcm_has_fixed_rate(subs);
  1249. subs->data_endpoint = snd_usb_endpoint_open(chip, fmt,
  1250. &params, false, fixed_rate);
  1251. if (!subs->data_endpoint) {
  1252. uaudio_err("failed to open data endpoint\n");
  1253. ret = -EINVAL;
  1254. goto exit;
  1255. }
  1256. if (fmt->sync_ep) {
  1257. subs->sync_endpoint = snd_usb_endpoint_open(chip,
  1258. fmt, &params, true, fixed_rate);
  1259. if (!subs->sync_endpoint) {
  1260. uaudio_err("failed to open sync endpoint\n");
  1261. ret = -EINVAL;
  1262. goto exit;
  1263. }
  1264. subs->data_endpoint->sync_source = subs->sync_endpoint;
  1265. }
  1266. mutex_lock(&chip->mutex);
  1267. subs->cur_audiofmt = fmt;
  1268. mutex_unlock(&chip->mutex);
  1269. ret = configure_endpoints(chip, subs);
  1270. if (ret < 0) {
  1271. uaudio_err("%d:%d: usb_set_interface failed (%d)\n",
  1272. fmt->iface, fmt->altsetting, ret);
  1273. goto exit;
  1274. }
  1275. uaudio_info("selected %s iface:%d altsetting:%d datainterval:%dus\n",
  1276. subs->direction ? "capture" : "playback",
  1277. fmt->iface, fmt->altsetting,
  1278. (1 << fmt->datainterval) *
  1279. (subs->dev->speed >= USB_SPEED_HIGH ?
  1280. BUS_INTERVAL_HIGHSPEED_AND_ABOVE :
  1281. BUS_INTERVAL_FULL_SPEED));
  1282. }
  1283. exit:
  1284. snd_usb_autosuspend(chip);
  1285. return ret;
  1286. }
  1287. static int __handle_uaudio_stream_req(struct qmi_uaudio_stream_req_msg_v01 *req_msg,
  1288. int *info_idx)
  1289. {
  1290. struct snd_usb_substream *subs;
  1291. struct snd_usb_audio *chip;
  1292. int ifnum;
  1293. u8 pcm_card_num, pcm_dev_num, direction;
  1294. direction = req_msg->usb_token & SND_PCM_STREAM_DIRECTION;
  1295. pcm_dev_num = (req_msg->usb_token & SND_PCM_DEV_NUM_MASK) >> 8;
  1296. pcm_card_num = (req_msg->usb_token & SND_PCM_CARD_NUM_MASK) >> 16;
  1297. uaudio_info("card#:%d dev#:%d dir:%d en:%d fmt:%d rate:%d #ch:%d\n",
  1298. pcm_card_num, pcm_dev_num, direction, req_msg->enable,
  1299. req_msg->audio_format, req_msg->bit_rate,
  1300. req_msg->number_of_ch);
  1301. if (pcm_card_num >= SNDRV_CARDS) {
  1302. uaudio_err("invalid card # %u", pcm_card_num);
  1303. return -EINVAL;
  1304. }
  1305. if (req_msg->audio_format > USB_QMI_PCM_FORMAT_U32_BE) {
  1306. uaudio_err("unsupported pcm format received %d\n",
  1307. req_msg->audio_format);
  1308. return -EINVAL;
  1309. }
  1310. subs = find_substream(pcm_card_num, pcm_dev_num, direction);
  1311. chip = uadev[pcm_card_num].chip;
  1312. if (!subs || !chip || atomic_read(&chip->shutdown)) {
  1313. uaudio_err("can't find substream for card# %u, dev# %u dir%u\n",
  1314. pcm_card_num, pcm_dev_num, direction);
  1315. return -ENODEV;
  1316. }
  1317. ifnum = subs->cur_audiofmt ? subs->cur_audiofmt->iface : -1;
  1318. *info_idx = info_idx_from_ifnum(pcm_card_num, ifnum, req_msg->enable);
  1319. if (atomic_read(&chip->shutdown) || !subs->stream || !subs->stream->pcm
  1320. || !subs->stream->chip) {
  1321. uaudio_err("chip or sub not available: shutdown:%d stream:%p\n",
  1322. atomic_read(&chip->shutdown), subs->stream);
  1323. if (subs->stream)
  1324. uaudio_err("pcm:%p chip:%p\n", subs->stream->pcm, subs->stream->chip);
  1325. return -ENODEV;
  1326. }
  1327. if (req_msg->enable && (*info_idx < 0)) {
  1328. uaudio_err("interface# %d already in use card# %d\n",
  1329. ifnum, pcm_card_num);
  1330. return -EBUSY;
  1331. }
  1332. return 0;
  1333. }
  1334. static void handle_uaudio_stream_req(struct qmi_handle *handle,
  1335. struct sockaddr_qrtr *sq,
  1336. struct qmi_txn *txn,
  1337. const void *decoded_msg)
  1338. {
  1339. struct qmi_uaudio_stream_req_msg_v01 *req_msg;
  1340. struct qmi_uaudio_stream_resp_msg_v01 resp = {{0}, 0};
  1341. struct snd_usb_substream *subs = NULL;
  1342. struct uaudio_qmi_svc *svc = uaudio_svc;
  1343. struct intf_info *info;
  1344. struct usb_host_endpoint *ep;
  1345. ktime_t t_request_recvd = ktime_get();
  1346. struct snd_usb_audio *chip = NULL;
  1347. u8 pcm_card_num, pcm_dev_num, direction;
  1348. int info_idx = -EINVAL, datainterval = -EINVAL, ret = 0;
  1349. #ifdef CONFIG_USB_NOTIFY_PROC_LOG
  1350. int on, type;
  1351. #endif
  1352. uaudio_dbg("sq_node:%x sq_port:%x sq_family:%x\n", sq->sq_node,
  1353. sq->sq_port, sq->sq_family);
  1354. if (!svc->client_connected) {
  1355. svc->client_sq = *sq;
  1356. svc->client_connected = true;
  1357. }
  1358. req_msg = (struct qmi_uaudio_stream_req_msg_v01 *)decoded_msg;
  1359. if (!req_msg->audio_format_valid || !req_msg->bit_rate_valid ||
  1360. !req_msg->number_of_ch_valid || !req_msg->xfer_buff_size_valid) {
  1361. uaudio_err("invalid request msg\n");
  1362. ret = -EINVAL;
  1363. goto response;
  1364. }
  1365. direction = req_msg->usb_token & SND_PCM_STREAM_DIRECTION;
  1366. pcm_dev_num = (req_msg->usb_token & SND_PCM_DEV_NUM_MASK) >> 8;
  1367. pcm_card_num = (req_msg->usb_token & SND_PCM_CARD_NUM_MASK) >> 16;
  1368. subs = find_substream(pcm_card_num, pcm_dev_num, direction);
  1369. if (!subs) {
  1370. uaudio_err("invalid substream\n");
  1371. ret = -EINVAL;
  1372. goto response;
  1373. }
  1374. chip = uadev[pcm_card_num].chip;
  1375. ret = __handle_uaudio_stream_req(req_msg, &info_idx);
  1376. if (ret)
  1377. goto response;
  1378. if (req_msg->service_interval_valid) {
  1379. ret = get_data_interval_from_si(subs,
  1380. req_msg->service_interval);
  1381. if (ret == -EINVAL) {
  1382. uaudio_err("invalid service interval %u\n",
  1383. req_msg->service_interval);
  1384. goto response;
  1385. }
  1386. datainterval = ret;
  1387. uaudio_dbg("data interval %u\n", ret);
  1388. }
  1389. uadev[pcm_card_num].ctrl_intf = chip->ctrl_intf;
  1390. atomic_inc(&chip->usage_count);
  1391. if (req_msg->enable) {
  1392. ret = enable_audio_stream(subs,
  1393. map_pcm_format(req_msg->audio_format),
  1394. req_msg->number_of_ch, req_msg->bit_rate,
  1395. datainterval);
  1396. if (!ret) {
  1397. ret = prepare_qmi_response(subs, req_msg, &resp,
  1398. info_idx);
  1399. uaudio_qdev->active_idx++;
  1400. }
  1401. } else {
  1402. snd_usb_autoresume(chip);
  1403. info = &uadev[pcm_card_num].info[info_idx];
  1404. if (info->data_ep_pipe) {
  1405. ep = usb_pipe_endpoint(uadev[pcm_card_num].udev,
  1406. info->data_ep_pipe);
  1407. if (!ep)
  1408. uaudio_dbg("no data ep\n");
  1409. else
  1410. xhci_stop_endpoint(uadev[pcm_card_num].udev,
  1411. ep);
  1412. info->data_ep_pipe = 0;
  1413. }
  1414. if (info->sync_ep_pipe) {
  1415. ep = usb_pipe_endpoint(uadev[pcm_card_num].udev,
  1416. info->sync_ep_pipe);
  1417. if (!ep)
  1418. uaudio_dbg("no sync ep\n");
  1419. else
  1420. xhci_stop_endpoint(uadev[pcm_card_num].udev,
  1421. ep);
  1422. info->sync_ep_pipe = 0;
  1423. }
  1424. disable_audio_stream(subs);
  1425. snd_usb_autosuspend(chip);
  1426. }
  1427. if (atomic_dec_and_test(&chip->usage_count) && atomic_read(&chip->shutdown))
  1428. wake_up(&chip->shutdown_wait);
  1429. #ifdef CONFIG_USB_NOTIFY_PROC_LOG
  1430. if (subs->direction == SNDRV_PCM_STREAM_PLAYBACK)
  1431. type = NOTIFY_PCM_PLAYBACK;
  1432. else
  1433. type = NOTIFY_PCM_CAPTURE;
  1434. on = req_msg->enable;
  1435. store_usblog_notify(type, (void *)&on, NULL);
  1436. #endif
  1437. response:
  1438. if (!req_msg->enable && ret != -EINVAL && ret != -ENODEV) {
  1439. mutex_lock(&chip->mutex);
  1440. if (info_idx >= 0) {
  1441. info = &uadev[pcm_card_num].info[info_idx];
  1442. uaudio_dev_intf_cleanup(
  1443. uadev[pcm_card_num].udev,
  1444. info);
  1445. uaudio_dbg("release resources: intf# %d card# %d\n",
  1446. info->intf_num, pcm_card_num);
  1447. }
  1448. if (atomic_read(&uadev[pcm_card_num].in_use))
  1449. kref_put(&uadev[pcm_card_num].kref,
  1450. uaudio_dev_release);
  1451. mutex_unlock(&chip->mutex);
  1452. }
  1453. resp.usb_token = req_msg->usb_token;
  1454. resp.usb_token_valid = 1;
  1455. resp.internal_status = ret;
  1456. resp.internal_status_valid = 1;
  1457. resp.status = ret ? USB_AUDIO_STREAM_REQ_FAILURE_V01 : ret;
  1458. resp.status_valid = 1;
  1459. ret = qmi_send_response(svc->uaudio_svc_hdl, sq, txn,
  1460. QMI_UAUDIO_STREAM_RESP_V01,
  1461. QMI_UAUDIO_STREAM_RESP_MSG_V01_MAX_MSG_LEN,
  1462. qmi_uaudio_stream_resp_msg_v01_ei, &resp);
  1463. uaudio_dbg("ret %d: qmi response latency %lld ms\n", ret,
  1464. ktime_to_ms(ktime_sub(ktime_get(), t_request_recvd)));
  1465. }
  1466. static void uaudio_qmi_disconnect_work(struct work_struct *w)
  1467. {
  1468. struct intf_info *info;
  1469. int idx, if_idx;
  1470. struct snd_usb_substream *subs;
  1471. struct snd_usb_audio *chip;
  1472. /* find all active intf for set alt 0 and cleanup usb audio dev */
  1473. for (idx = 0; idx < SNDRV_CARDS; idx++) {
  1474. if (!atomic_read(&uadev[idx].in_use))
  1475. continue;
  1476. for (if_idx = 0; if_idx < uadev[idx].num_intf; if_idx++) {
  1477. if (!uadev[idx].info || !uadev[idx].info[if_idx].in_use)
  1478. continue;
  1479. info = &uadev[idx].info[if_idx];
  1480. subs = find_substream(info->pcm_card_num,
  1481. info->pcm_dev_num,
  1482. info->direction);
  1483. chip = uadev[idx].chip;
  1484. if (!subs || !chip || atomic_read(&chip->shutdown)) {
  1485. uaudio_dbg("no subs for c#%u, dev#%u dir%u\n",
  1486. info->pcm_card_num,
  1487. info->pcm_dev_num,
  1488. info->direction);
  1489. continue;
  1490. }
  1491. disable_audio_stream(subs);
  1492. }
  1493. atomic_set(&uadev[idx].in_use, 0);
  1494. uaudio_dev_cleanup(&uadev[idx]);
  1495. }
  1496. }
  1497. static void uaudio_qmi_bye_cb(struct qmi_handle *handle, unsigned int node)
  1498. {
  1499. struct uaudio_qmi_svc *svc = uaudio_svc;
  1500. if (svc->uaudio_svc_hdl != handle) {
  1501. uaudio_err("handle mismatch\n");
  1502. return;
  1503. }
  1504. if (svc->client_connected && svc->client_sq.sq_node == node) {
  1505. uaudio_dbg("node: %d\n", node);
  1506. queue_work(svc->uaudio_wq, &svc->qmi_disconnect_work);
  1507. svc->client_sq.sq_node = 0;
  1508. svc->client_sq.sq_port = 0;
  1509. svc->client_sq.sq_family = 0;
  1510. svc->client_connected = false;
  1511. }
  1512. }
  1513. static void uaudio_qmi_svc_disconnect_cb(struct qmi_handle *handle,
  1514. unsigned int node, unsigned int port)
  1515. {
  1516. struct uaudio_qmi_svc *svc;
  1517. if (uaudio_svc == NULL)
  1518. return;
  1519. svc = uaudio_svc;
  1520. if (svc->uaudio_svc_hdl != handle) {
  1521. uaudio_err("handle mismatch\n");
  1522. return;
  1523. }
  1524. if (svc->client_connected && svc->client_sq.sq_node == node &&
  1525. svc->client_sq.sq_port == port) {
  1526. uaudio_dbg("client node:%x port:%x\n", node, port);
  1527. queue_work(svc->uaudio_wq, &svc->qmi_disconnect_work);
  1528. svc->client_sq.sq_node = 0;
  1529. svc->client_sq.sq_port = 0;
  1530. svc->client_sq.sq_family = 0;
  1531. svc->client_connected = false;
  1532. }
  1533. }
  1534. static int uaudio_find_active_idx(void)
  1535. {
  1536. int idx;
  1537. for (idx = 0; idx < SNDRV_CARDS; idx++) {
  1538. if (atomic_read(&uadev[idx].in_use))
  1539. return idx;
  1540. }
  1541. return -ENODEV;
  1542. }
  1543. static void uaudio_dev_suspend(void *unused, struct usb_device *udev,
  1544. pm_message_t msg, int *bypass)
  1545. {
  1546. if (!uaudio_qdev->active_idx)
  1547. goto out;
  1548. /* Check if active card device is on the RH being suspended */
  1549. if (!udev->parent) {
  1550. int active = uaudio_find_active_idx();
  1551. if (active == -ENODEV)
  1552. goto out;
  1553. if ((udev->speed <= USB_SPEED_HIGH &&
  1554. uadev[active].udev->speed >= USB_SPEED_SUPER) ||
  1555. (udev->speed >= USB_SPEED_SUPER &&
  1556. uadev[active].udev->speed <= USB_SPEED_HIGH))
  1557. goto out;
  1558. }
  1559. *bypass = 1;
  1560. out:
  1561. uaudio_dbg("%s bypass: %d active idx: %d\n", udev->dev.kobj.name,
  1562. *bypass, uaudio_qdev->active_idx);
  1563. }
  1564. static void uaudio_dev_resume(void *unused, struct usb_device *udev,
  1565. pm_message_t msg, int *bypass)
  1566. {
  1567. if (!uaudio_qdev->active_idx)
  1568. goto out;
  1569. /* Check if active card device is on the RH being resumed */
  1570. if (!udev->parent) {
  1571. int active = uaudio_find_active_idx();
  1572. if (active == -ENODEV)
  1573. goto out;
  1574. if ((udev->speed <= USB_SPEED_HIGH &&
  1575. uadev[active].udev->speed >= USB_SPEED_SUPER) ||
  1576. (udev->speed >= USB_SPEED_SUPER &&
  1577. uadev[active].udev->speed <= USB_SPEED_HIGH))
  1578. goto out;
  1579. }
  1580. *bypass = 1;
  1581. out:
  1582. uaudio_dbg("%s bypass: %d active idx: %d\n", udev->dev.kobj.name,
  1583. *bypass, uaudio_qdev->active_idx);
  1584. }
  1585. static void uaudio_xhci_suspend(void *unused, struct device *dev, int *bypass)
  1586. {
  1587. if (!uaudio_qdev->active_idx)
  1588. goto out;
  1589. *bypass = 1;
  1590. out:
  1591. uaudio_dbg("%s bypass: %d active idx: %d\n", dev->kobj.name,
  1592. *bypass, uaudio_qdev->active_idx);
  1593. }
  1594. static void uaudio_xhci_resume(void *unused, struct device *dev, int *bypass)
  1595. {
  1596. if (!uaudio_qdev->active_idx)
  1597. goto out;
  1598. *bypass = 1;
  1599. out:
  1600. uaudio_dbg("%s bypass: %d active idx: %d\n", dev->kobj.name,
  1601. *bypass, uaudio_qdev->active_idx);
  1602. }
  1603. static struct qmi_ops uaudio_svc_ops_options = {
  1604. .bye = uaudio_qmi_bye_cb,
  1605. .del_client = uaudio_qmi_svc_disconnect_cb,
  1606. };
  1607. static int uaudio_qmi_svc_init(void);
  1608. static int uaudio_qmi_plat_probe(struct platform_device *pdev)
  1609. {
  1610. int ret;
  1611. struct device_node *node = pdev->dev.of_node;
  1612. if (!uaudio_svc) {
  1613. ret = uaudio_qmi_svc_init();
  1614. if (ret)
  1615. return ret;
  1616. }
  1617. uaudio_qdev = devm_kzalloc(&pdev->dev, sizeof(struct uaudio_qmi_dev),
  1618. GFP_KERNEL);
  1619. if (!uaudio_qdev)
  1620. return -ENOMEM;
  1621. uaudio_qdev->dev = &pdev->dev;
  1622. ret = of_property_read_u32(node, "qcom,usb-audio-stream-id",
  1623. &uaudio_qdev->sid);
  1624. if (ret) {
  1625. dev_err(&pdev->dev, "failed to read sid.\n");
  1626. return -ENODEV;
  1627. }
  1628. ret = of_property_read_u32(node, "qcom,usb-audio-intr-num",
  1629. &uaudio_qdev->intr_num);
  1630. if (ret) {
  1631. dev_err(&pdev->dev, "failed to read intr num.\n");
  1632. return -ENODEV;
  1633. }
  1634. uaudio_qdev->domain = iommu_domain_alloc(pdev->dev.bus);
  1635. if (!uaudio_qdev->domain) {
  1636. dev_err(&pdev->dev, "failed to allocate iommu domain\n");
  1637. return -ENODEV;
  1638. }
  1639. /* attach to external processor iommu */
  1640. ret = iommu_attach_device(uaudio_qdev->domain, &pdev->dev);
  1641. if (ret) {
  1642. dev_err(&pdev->dev, "failed to attach device ret = %d\n", ret);
  1643. goto free_domain;
  1644. }
  1645. /* initialize xfer ring and xfer buf iova list */
  1646. INIT_LIST_HEAD(&uaudio_qdev->xfer_ring_list);
  1647. uaudio_qdev->curr_xfer_ring_iova = IOVA_XFER_RING_BASE;
  1648. uaudio_qdev->xfer_ring_iova_size =
  1649. IOVA_XFER_RING_MAX - IOVA_XFER_RING_BASE;
  1650. INIT_LIST_HEAD(&uaudio_qdev->xfer_buf_list);
  1651. uaudio_qdev->curr_xfer_buf_iova = IOVA_XFER_BUF_BASE;
  1652. uaudio_qdev->xfer_buf_iova_size =
  1653. IOVA_XFER_BUF_MAX - IOVA_XFER_BUF_BASE;
  1654. uaudio_qdev->active_idx = 0;
  1655. ret = register_trace_android_vh_usb_dev_suspend(uaudio_dev_suspend, NULL);
  1656. if (ret) {
  1657. dev_err(&pdev->dev, "failed to register dev suspend callback ret = %d\n", ret);
  1658. }
  1659. ret = register_trace_android_vh_usb_dev_resume(uaudio_dev_resume, NULL);
  1660. if (ret) {
  1661. dev_err(&pdev->dev, "failed to register dev resume callback ret = %d\n", ret);
  1662. }
  1663. ret = register_trace_android_vh_xhci_suspend(uaudio_xhci_suspend, NULL);
  1664. if (ret) {
  1665. dev_err(&pdev->dev, "failed to register xhci suspend callback ret = %d\n", ret);
  1666. }
  1667. ret = register_trace_android_vh_xhci_resume(uaudio_xhci_resume, NULL);
  1668. if (ret) {
  1669. dev_err(&pdev->dev, "failed to register xhci resume callback ret = %d\n", ret);
  1670. }
  1671. ret = register_trace_android_vh_audio_usb_offload_connect(uaudio_connect, NULL);
  1672. if (ret) {
  1673. dev_err(&pdev->dev, "failed to register connect callback ret = %d\n", ret);
  1674. goto detach_device;
  1675. }
  1676. ret = register_trace_android_rvh_audio_usb_offload_disconnect(uaudio_disconnect, NULL);
  1677. dev_err(&pdev->dev, "failed to register disconnect callback ret = %d\n", ret);
  1678. return 0;
  1679. detach_device:
  1680. iommu_detach_device(uaudio_qdev->domain, &pdev->dev);
  1681. free_domain:
  1682. iommu_domain_free(uaudio_qdev->domain);
  1683. return ret;
  1684. }
  1685. static int uaudio_qmi_plat_remove(struct platform_device *pdev)
  1686. {
  1687. unregister_trace_android_vh_audio_usb_offload_connect(uaudio_connect, NULL);
  1688. iommu_detach_device(uaudio_qdev->domain, &pdev->dev);
  1689. iommu_domain_free(uaudio_qdev->domain);
  1690. uaudio_qdev->domain = NULL;
  1691. return 0;
  1692. }
  1693. static const struct of_device_id of_uaudio_matach[] = {
  1694. {
  1695. .compatible = "qcom,usb-audio-qmi-dev",
  1696. },
  1697. { },
  1698. };
  1699. MODULE_DEVICE_TABLE(of, of_uaudio_matach);
  1700. static struct platform_driver uaudio_qmi_driver = {
  1701. .probe = uaudio_qmi_plat_probe,
  1702. .remove = uaudio_qmi_plat_remove,
  1703. .driver = {
  1704. .name = "uaudio-qmi",
  1705. .of_match_table = of_uaudio_matach,
  1706. },
  1707. };
  1708. static int uaudio_qmi_svc_init(void)
  1709. {
  1710. int ret;
  1711. struct uaudio_qmi_svc *svc;
  1712. svc = kzalloc(sizeof(struct uaudio_qmi_svc), GFP_KERNEL);
  1713. if (!svc)
  1714. return -ENOMEM;
  1715. svc->uaudio_wq = create_singlethread_workqueue("uaudio_svc");
  1716. if (!svc->uaudio_wq) {
  1717. ret = -ENOMEM;
  1718. goto free_svc;
  1719. }
  1720. svc->uaudio_svc_hdl = kzalloc(sizeof(struct qmi_handle), GFP_KERNEL);
  1721. if (!svc->uaudio_svc_hdl) {
  1722. ret = -ENOMEM;
  1723. goto destroy_uaudio_wq;
  1724. }
  1725. ret = qmi_handle_init(svc->uaudio_svc_hdl,
  1726. QMI_UAUDIO_STREAM_REQ_MSG_V01_MAX_MSG_LEN,
  1727. &uaudio_svc_ops_options,
  1728. &uaudio_stream_req_handlers);
  1729. if (ret < 0) {
  1730. pr_err("%s:Error registering uaudio svc %d\n", __func__, ret);
  1731. goto free_svc_hdl;
  1732. }
  1733. uaudio_svc = svc;
  1734. INIT_WORK(&svc->qmi_disconnect_work, uaudio_qmi_disconnect_work);
  1735. ret = qmi_add_server(svc->uaudio_svc_hdl, UAUDIO_STREAM_SERVICE_ID_V01,
  1736. UAUDIO_STREAM_SERVICE_VERS_V01, 0);
  1737. if (ret < 0) {
  1738. pr_err("%s: failed to add uaudio svc server :%d\n",
  1739. __func__, ret);
  1740. goto release_uaudio_svs_hdl;
  1741. }
  1742. svc->uaudio_ipc_log = ipc_log_context_create(NUM_LOG_PAGES, "usb_audio",
  1743. 0);
  1744. return 0;
  1745. release_uaudio_svs_hdl:
  1746. qmi_handle_release(svc->uaudio_svc_hdl);
  1747. uaudio_svc = NULL;
  1748. free_svc_hdl:
  1749. kfree(svc->uaudio_svc_hdl);
  1750. destroy_uaudio_wq:
  1751. destroy_workqueue(svc->uaudio_wq);
  1752. free_svc:
  1753. kfree(svc);
  1754. return ret;
  1755. }
  1756. static void uaudio_qmi_svc_exit(void)
  1757. {
  1758. struct uaudio_qmi_svc *svc = uaudio_svc;
  1759. qmi_handle_release(svc->uaudio_svc_hdl);
  1760. flush_workqueue(svc->uaudio_wq);
  1761. destroy_workqueue(svc->uaudio_wq);
  1762. kfree(svc->uaudio_svc_hdl);
  1763. ipc_log_context_destroy(svc->uaudio_ipc_log);
  1764. kfree(svc);
  1765. uaudio_svc = NULL;
  1766. }
  1767. static int __init uaudio_qmi_plat_init(void)
  1768. {
  1769. return platform_driver_register(&uaudio_qmi_driver);
  1770. }
  1771. static void __exit uaudio_qmi_plat_exit(void)
  1772. {
  1773. uaudio_qmi_svc_exit();
  1774. platform_driver_unregister(&uaudio_qmi_driver);
  1775. }
  1776. module_init(uaudio_qmi_plat_init);
  1777. module_exit(uaudio_qmi_plat_exit);
  1778. MODULE_DESCRIPTION("USB AUDIO QMI Service Driver");
  1779. MODULE_LICENSE("GPL");