hpioctl.c 13 KB

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  1. /*******************************************************************************
  2. AudioScience HPI driver
  3. Copyright (C) 1997-2010 AudioScience Inc. <support@audioscience.com>
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of version 2 of the GNU General Public License as
  6. published by the Free Software Foundation;
  7. This program is distributed in the hope that it will be useful,
  8. but WITHOUT ANY WARRANTY; without even the implied warranty of
  9. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  10. GNU General Public License for more details.
  11. You should have received a copy of the GNU General Public License
  12. along with this program; if not, write to the Free Software
  13. Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
  14. Common Linux HPI ioctl and module probe/remove functions
  15. *******************************************************************************/
  16. #define SOURCEFILE_NAME "hpioctl.c"
  17. #include "hpi_internal.h"
  18. #include "hpimsginit.h"
  19. #include "hpidebug.h"
  20. #include "hpimsgx.h"
  21. #include "hpioctl.h"
  22. #include <linux/fs.h>
  23. #include <linux/slab.h>
  24. #include <linux/moduleparam.h>
  25. #include <asm/uaccess.h>
  26. #include <linux/stringify.h>
  27. #ifdef MODULE_FIRMWARE
  28. MODULE_FIRMWARE("asihpi/dsp5000.bin");
  29. MODULE_FIRMWARE("asihpi/dsp6200.bin");
  30. MODULE_FIRMWARE("asihpi/dsp6205.bin");
  31. MODULE_FIRMWARE("asihpi/dsp6400.bin");
  32. MODULE_FIRMWARE("asihpi/dsp6600.bin");
  33. MODULE_FIRMWARE("asihpi/dsp8700.bin");
  34. MODULE_FIRMWARE("asihpi/dsp8900.bin");
  35. #endif
  36. static int prealloc_stream_buf;
  37. module_param(prealloc_stream_buf, int, S_IRUGO);
  38. MODULE_PARM_DESC(prealloc_stream_buf,
  39. "preallocate size for per-adapter stream buffer");
  40. /* Allow the debug level to be changed after module load.
  41. E.g. echo 2 > /sys/module/asihpi/parameters/hpiDebugLevel
  42. */
  43. module_param(hpi_debug_level, int, S_IRUGO | S_IWUSR);
  44. MODULE_PARM_DESC(hpi_debug_level, "debug verbosity 0..5");
  45. /* List of adapters found */
  46. static struct hpi_adapter adapters[HPI_MAX_ADAPTERS];
  47. /* Wrapper function to HPI_Message to enable dumping of the
  48. message and response types.
  49. */
  50. static void hpi_send_recv_f(struct hpi_message *phm, struct hpi_response *phr,
  51. struct file *file)
  52. {
  53. int adapter = phm->adapter_index;
  54. if ((adapter >= HPI_MAX_ADAPTERS || adapter < 0)
  55. && (phm->object != HPI_OBJ_SUBSYSTEM))
  56. phr->error = HPI_ERROR_INVALID_OBJ_INDEX;
  57. else
  58. hpi_send_recv_ex(phm, phr, file);
  59. }
  60. /* This is called from hpifunc.c functions, called by ALSA
  61. * (or other kernel process) In this case there is no file descriptor
  62. * available for the message cache code
  63. */
  64. void hpi_send_recv(struct hpi_message *phm, struct hpi_response *phr)
  65. {
  66. hpi_send_recv_f(phm, phr, HOWNER_KERNEL);
  67. }
  68. EXPORT_SYMBOL(hpi_send_recv);
  69. /* for radio-asihpi */
  70. int asihpi_hpi_release(struct file *file)
  71. {
  72. struct hpi_message hm;
  73. struct hpi_response hr;
  74. /* HPI_DEBUG_LOG(INFO,"hpi_release file %p, pid %d\n", file, current->pid); */
  75. /* close the subsystem just in case the application forgot to. */
  76. hpi_init_message_response(&hm, &hr, HPI_OBJ_SUBSYSTEM,
  77. HPI_SUBSYS_CLOSE);
  78. hpi_send_recv_ex(&hm, &hr, file);
  79. return 0;
  80. }
  81. long asihpi_hpi_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
  82. {
  83. struct hpi_ioctl_linux __user *phpi_ioctl_data;
  84. void __user *puhm;
  85. void __user *puhr;
  86. union hpi_message_buffer_v1 *hm;
  87. union hpi_response_buffer_v1 *hr;
  88. u16 res_max_size;
  89. u32 uncopied_bytes;
  90. struct hpi_adapter *pa = NULL;
  91. int err = 0;
  92. if (cmd != HPI_IOCTL_LINUX)
  93. return -EINVAL;
  94. hm = kmalloc(sizeof(*hm), GFP_KERNEL);
  95. hr = kmalloc(sizeof(*hr), GFP_KERNEL);
  96. if (!hm || !hr) {
  97. err = -ENOMEM;
  98. goto out;
  99. }
  100. phpi_ioctl_data = (struct hpi_ioctl_linux __user *)arg;
  101. /* Read the message and response pointers from user space. */
  102. get_user(puhm, &phpi_ioctl_data->phm);
  103. get_user(puhr, &phpi_ioctl_data->phr);
  104. /* Now read the message size and data from user space. */
  105. get_user(hm->h.size, (u16 __user *)puhm);
  106. if (hm->h.size > sizeof(*hm))
  107. hm->h.size = sizeof(*hm);
  108. /*printk(KERN_INFO "message size %d\n", hm->h.wSize); */
  109. uncopied_bytes = copy_from_user(hm, puhm, hm->h.size);
  110. if (uncopied_bytes) {
  111. HPI_DEBUG_LOG(ERROR, "uncopied bytes %d\n", uncopied_bytes);
  112. err = -EFAULT;
  113. goto out;
  114. }
  115. get_user(res_max_size, (u16 __user *)puhr);
  116. /* printk(KERN_INFO "user response size %d\n", res_max_size); */
  117. if (res_max_size < sizeof(struct hpi_response_header)) {
  118. HPI_DEBUG_LOG(WARNING, "small res size %d\n", res_max_size);
  119. err = -EFAULT;
  120. goto out;
  121. }
  122. pa = &adapters[hm->h.adapter_index];
  123. hr->h.size = 0;
  124. if (hm->h.object == HPI_OBJ_SUBSYSTEM) {
  125. switch (hm->h.function) {
  126. case HPI_SUBSYS_CREATE_ADAPTER:
  127. case HPI_SUBSYS_DELETE_ADAPTER:
  128. /* Application must not use these functions! */
  129. hr->h.size = sizeof(hr->h);
  130. hr->h.error = HPI_ERROR_INVALID_OPERATION;
  131. hr->h.function = hm->h.function;
  132. uncopied_bytes = copy_to_user(puhr, hr, hr->h.size);
  133. if (uncopied_bytes)
  134. err = -EFAULT;
  135. else
  136. err = 0;
  137. goto out;
  138. default:
  139. hpi_send_recv_f(&hm->m0, &hr->r0, file);
  140. }
  141. } else {
  142. u16 __user *ptr = NULL;
  143. u32 size = 0;
  144. /* -1=no data 0=read from user mem, 1=write to user mem */
  145. int wrflag = -1;
  146. u32 adapter = hm->h.adapter_index;
  147. if ((hm->h.adapter_index > HPI_MAX_ADAPTERS) || (!pa->type)) {
  148. hpi_init_response(&hr->r0, HPI_OBJ_ADAPTER,
  149. HPI_ADAPTER_OPEN,
  150. HPI_ERROR_BAD_ADAPTER_NUMBER);
  151. uncopied_bytes =
  152. copy_to_user(puhr, hr, sizeof(hr->h));
  153. if (uncopied_bytes)
  154. err = -EFAULT;
  155. else
  156. err = 0;
  157. goto out;
  158. }
  159. if (mutex_lock_interruptible(&adapters[adapter].mutex)) {
  160. err = -EINTR;
  161. goto out;
  162. }
  163. /* Dig out any pointers embedded in the message. */
  164. switch (hm->h.function) {
  165. case HPI_OSTREAM_WRITE:
  166. case HPI_ISTREAM_READ:{
  167. /* Yes, sparse, this is correct. */
  168. ptr = (u16 __user *)hm->m0.u.d.u.data.pb_data;
  169. size = hm->m0.u.d.u.data.data_size;
  170. /* Allocate buffer according to application request.
  171. ?Is it better to alloc/free for the duration
  172. of the transaction?
  173. */
  174. if (pa->buffer_size < size) {
  175. HPI_DEBUG_LOG(DEBUG,
  176. "realloc adapter %d stream "
  177. "buffer from %zd to %d\n",
  178. hm->h.adapter_index,
  179. pa->buffer_size, size);
  180. if (pa->p_buffer) {
  181. pa->buffer_size = 0;
  182. vfree(pa->p_buffer);
  183. }
  184. pa->p_buffer = vmalloc(size);
  185. if (pa->p_buffer)
  186. pa->buffer_size = size;
  187. else {
  188. HPI_DEBUG_LOG(ERROR,
  189. "HPI could not allocate "
  190. "stream buffer size %d\n",
  191. size);
  192. mutex_unlock(&adapters
  193. [adapter].mutex);
  194. err = -EINVAL;
  195. goto out;
  196. }
  197. }
  198. hm->m0.u.d.u.data.pb_data = pa->p_buffer;
  199. if (hm->h.function == HPI_ISTREAM_READ)
  200. /* from card, WRITE to user mem */
  201. wrflag = 1;
  202. else
  203. wrflag = 0;
  204. break;
  205. }
  206. default:
  207. size = 0;
  208. break;
  209. }
  210. if (size && (wrflag == 0)) {
  211. uncopied_bytes =
  212. copy_from_user(pa->p_buffer, ptr, size);
  213. if (uncopied_bytes)
  214. HPI_DEBUG_LOG(WARNING,
  215. "missed %d of %d "
  216. "bytes from user\n", uncopied_bytes,
  217. size);
  218. }
  219. hpi_send_recv_f(&hm->m0, &hr->r0, file);
  220. if (size && (wrflag == 1)) {
  221. uncopied_bytes =
  222. copy_to_user(ptr, pa->p_buffer, size);
  223. if (uncopied_bytes)
  224. HPI_DEBUG_LOG(WARNING,
  225. "missed %d of %d " "bytes to user\n",
  226. uncopied_bytes, size);
  227. }
  228. mutex_unlock(&adapters[adapter].mutex);
  229. }
  230. /* on return response size must be set */
  231. /*printk(KERN_INFO "response size %d\n", hr->h.wSize); */
  232. if (!hr->h.size) {
  233. HPI_DEBUG_LOG(ERROR, "response zero size\n");
  234. err = -EFAULT;
  235. goto out;
  236. }
  237. if (hr->h.size > res_max_size) {
  238. HPI_DEBUG_LOG(ERROR, "response too big %d %d\n", hr->h.size,
  239. res_max_size);
  240. /*HPI_DEBUG_MESSAGE(ERROR, hm); */
  241. err = -EFAULT;
  242. goto out;
  243. }
  244. uncopied_bytes = copy_to_user(puhr, hr, hr->h.size);
  245. if (uncopied_bytes) {
  246. HPI_DEBUG_LOG(ERROR, "uncopied bytes %d\n", uncopied_bytes);
  247. err = -EFAULT;
  248. goto out;
  249. }
  250. out:
  251. kfree(hm);
  252. kfree(hr);
  253. return err;
  254. }
  255. int __devinit asihpi_adapter_probe(struct pci_dev *pci_dev,
  256. const struct pci_device_id *pci_id)
  257. {
  258. int err, idx, nm;
  259. unsigned int memlen;
  260. struct hpi_message hm;
  261. struct hpi_response hr;
  262. struct hpi_adapter adapter;
  263. struct hpi_pci pci;
  264. memset(&adapter, 0, sizeof(adapter));
  265. printk(KERN_DEBUG "probe PCI device (%04x:%04x,%04x:%04x,%04x)\n",
  266. pci_dev->vendor, pci_dev->device, pci_dev->subsystem_vendor,
  267. pci_dev->subsystem_device, pci_dev->devfn);
  268. hpi_init_message_response(&hm, &hr, HPI_OBJ_SUBSYSTEM,
  269. HPI_SUBSYS_CREATE_ADAPTER);
  270. hpi_init_response(&hr, HPI_OBJ_SUBSYSTEM, HPI_SUBSYS_CREATE_ADAPTER,
  271. HPI_ERROR_PROCESSING_MESSAGE);
  272. hm.adapter_index = -1; /* an invalid index */
  273. /* fill in HPI_PCI information from kernel provided information */
  274. adapter.pci = pci_dev;
  275. nm = HPI_MAX_ADAPTER_MEM_SPACES;
  276. for (idx = 0; idx < nm; idx++) {
  277. HPI_DEBUG_LOG(INFO, "resource %d %s %08llx-%08llx %04llx\n",
  278. idx, pci_dev->resource[idx].name,
  279. (unsigned long long)pci_resource_start(pci_dev, idx),
  280. (unsigned long long)pci_resource_end(pci_dev, idx),
  281. (unsigned long long)pci_resource_flags(pci_dev, idx));
  282. if (pci_resource_flags(pci_dev, idx) & IORESOURCE_MEM) {
  283. memlen = pci_resource_len(pci_dev, idx);
  284. adapter.ap_remapped_mem_base[idx] =
  285. ioremap(pci_resource_start(pci_dev, idx),
  286. memlen);
  287. if (!adapter.ap_remapped_mem_base[idx]) {
  288. HPI_DEBUG_LOG(ERROR,
  289. "ioremap failed, aborting\n");
  290. /* unmap previously mapped pci mem space */
  291. goto err;
  292. }
  293. }
  294. pci.ap_mem_base[idx] = adapter.ap_remapped_mem_base[idx];
  295. }
  296. /* could replace Pci with direct pointer to pci_dev for linux
  297. Instead wrap accessor functions for IDs etc.
  298. Would it work for windows?
  299. */
  300. pci.bus_number = pci_dev->bus->number;
  301. pci.vendor_id = (u16)pci_dev->vendor;
  302. pci.device_id = (u16)pci_dev->device;
  303. pci.subsys_vendor_id = (u16)(pci_dev->subsystem_vendor & 0xffff);
  304. pci.subsys_device_id = (u16)(pci_dev->subsystem_device & 0xffff);
  305. pci.device_number = pci_dev->devfn;
  306. pci.interrupt = pci_dev->irq;
  307. pci.p_os_data = pci_dev;
  308. hm.u.s.resource.bus_type = HPI_BUS_PCI;
  309. hm.u.s.resource.r.pci = &pci;
  310. /* call CreateAdapterObject on the relevant hpi module */
  311. hpi_send_recv_ex(&hm, &hr, HOWNER_KERNEL);
  312. if (hr.error)
  313. goto err;
  314. if (prealloc_stream_buf) {
  315. adapter.p_buffer = vmalloc(prealloc_stream_buf);
  316. if (!adapter.p_buffer) {
  317. HPI_DEBUG_LOG(ERROR,
  318. "HPI could not allocate "
  319. "kernel buffer size %d\n",
  320. prealloc_stream_buf);
  321. goto err;
  322. }
  323. }
  324. adapter.index = hr.u.s.adapter_index;
  325. adapter.type = hr.u.s.aw_adapter_list[adapter.index];
  326. hm.adapter_index = adapter.index;
  327. err = hpi_adapter_open(NULL, adapter.index);
  328. if (err)
  329. goto err;
  330. adapter.snd_card_asihpi = NULL;
  331. /* WARNING can't init mutex in 'adapter'
  332. * and then copy it to adapters[] ?!?!
  333. */
  334. adapters[hr.u.s.adapter_index] = adapter;
  335. mutex_init(&adapters[adapter.index].mutex);
  336. pci_set_drvdata(pci_dev, &adapters[adapter.index]);
  337. printk(KERN_INFO "probe found adapter ASI%04X HPI index #%d.\n",
  338. adapter.type, adapter.index);
  339. return 0;
  340. err:
  341. for (idx = 0; idx < HPI_MAX_ADAPTER_MEM_SPACES; idx++) {
  342. if (adapter.ap_remapped_mem_base[idx]) {
  343. iounmap(adapter.ap_remapped_mem_base[idx]);
  344. adapter.ap_remapped_mem_base[idx] = NULL;
  345. }
  346. }
  347. if (adapter.p_buffer) {
  348. adapter.buffer_size = 0;
  349. vfree(adapter.p_buffer);
  350. }
  351. HPI_DEBUG_LOG(ERROR, "adapter_probe failed\n");
  352. return -ENODEV;
  353. }
  354. void __devexit asihpi_adapter_remove(struct pci_dev *pci_dev)
  355. {
  356. int idx;
  357. struct hpi_message hm;
  358. struct hpi_response hr;
  359. struct hpi_adapter *pa;
  360. pa = (struct hpi_adapter *)pci_get_drvdata(pci_dev);
  361. hpi_init_message_response(&hm, &hr, HPI_OBJ_SUBSYSTEM,
  362. HPI_SUBSYS_DELETE_ADAPTER);
  363. hm.adapter_index = pa->index;
  364. hpi_send_recv_ex(&hm, &hr, HOWNER_KERNEL);
  365. /* unmap PCI memory space, mapped during device init. */
  366. for (idx = 0; idx < HPI_MAX_ADAPTER_MEM_SPACES; idx++) {
  367. if (pa->ap_remapped_mem_base[idx]) {
  368. iounmap(pa->ap_remapped_mem_base[idx]);
  369. pa->ap_remapped_mem_base[idx] = NULL;
  370. }
  371. }
  372. if (pa->p_buffer) {
  373. pa->buffer_size = 0;
  374. vfree(pa->p_buffer);
  375. }
  376. pci_set_drvdata(pci_dev, NULL);
  377. /*
  378. printk(KERN_INFO "PCI device (%04x:%04x,%04x:%04x,%04x),"
  379. " HPI index # %d, removed.\n",
  380. pci_dev->vendor, pci_dev->device,
  381. pci_dev->subsystem_vendor,
  382. pci_dev->subsystem_device, pci_dev->devfn,
  383. pa->index);
  384. */
  385. }
  386. void __init asihpi_init(void)
  387. {
  388. struct hpi_message hm;
  389. struct hpi_response hr;
  390. memset(adapters, 0, sizeof(adapters));
  391. printk(KERN_INFO "ASIHPI driver %d.%02d.%02d\n",
  392. HPI_VER_MAJOR(HPI_VER), HPI_VER_MINOR(HPI_VER),
  393. HPI_VER_RELEASE(HPI_VER));
  394. hpi_init_message_response(&hm, &hr, HPI_OBJ_SUBSYSTEM,
  395. HPI_SUBSYS_DRIVER_LOAD);
  396. hpi_send_recv_ex(&hm, &hr, HOWNER_KERNEL);
  397. }
  398. void asihpi_exit(void)
  399. {
  400. struct hpi_message hm;
  401. struct hpi_response hr;
  402. hpi_init_message_response(&hm, &hr, HPI_OBJ_SUBSYSTEM,
  403. HPI_SUBSYS_DRIVER_UNLOAD);
  404. hpi_send_recv_ex(&hm, &hr, HOWNER_KERNEL);
  405. }