1 /*
2  * Intel MIC Platform Software Stack (MPSS)
3  *
4  * Copyright(c) 2013 Intel Corporation.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License, version 2, as
8  * published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful, but
11  * WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13  * General Public License for more details.
14  *
15  * The full GNU General Public License is included in this distribution in
16  * the file called "COPYING".
17  *
18  * Disclaimer: The codes contained in these modules may be specific to
19  * the Intel Software Development Platform codenamed: Knights Ferry, and
20  * the Intel product codenamed: Knights Corner, and are not backward
21  * compatible with other Intel products. Additionally, Intel will NOT
22  * support the codes or instruction set in future products.
23  *
24  * Intel MIC Card driver.
25  *
26  */
27 #include <linux/module.h>
28 #include <linux/pci.h>
29 #include <linux/interrupt.h>
30 #include <linux/reboot.h>
31 #include <linux/dmaengine.h>
32 #include <linux/kmod.h>
33 
34 #include <linux/mic_common.h>
35 #include "../common/mic_dev.h"
36 #include "mic_device.h"
37 #include "mic_virtio.h"
38 
39 static struct mic_driver *g_drv;
40 
mic_dp_init(void)41 static int __init mic_dp_init(void)
42 {
43 	struct mic_driver *mdrv = g_drv;
44 	struct mic_device *mdev = &mdrv->mdev;
45 	struct mic_bootparam __iomem *bootparam;
46 	u64 lo, hi, dp_dma_addr;
47 	u32 magic;
48 
49 	lo = mic_read_spad(&mdrv->mdev, MIC_DPLO_SPAD);
50 	hi = mic_read_spad(&mdrv->mdev, MIC_DPHI_SPAD);
51 
52 	dp_dma_addr = lo | (hi << 32);
53 	mdrv->dp = mic_card_map(mdev, dp_dma_addr, MIC_DP_SIZE);
54 	if (!mdrv->dp) {
55 		dev_err(mdrv->dev, "Cannot remap Aperture BAR\n");
56 		return -ENOMEM;
57 	}
58 	bootparam = mdrv->dp;
59 	magic = ioread32(&bootparam->magic);
60 	if (MIC_MAGIC != magic) {
61 		dev_err(mdrv->dev, "bootparam magic mismatch 0x%x\n", magic);
62 		return -EIO;
63 	}
64 	return 0;
65 }
66 
67 /* Uninitialize the device page */
mic_dp_uninit(void)68 static void mic_dp_uninit(void)
69 {
70 	mic_card_unmap(&g_drv->mdev, g_drv->dp);
71 }
72 
73 /**
74  * mic_request_card_irq - request an irq.
75  *
76  * @handler: interrupt handler passed to request_threaded_irq.
77  * @thread_fn: thread fn. passed to request_threaded_irq.
78  * @name: The ASCII name of the callee requesting the irq.
79  * @data: private data that is returned back when calling the
80  * function handler.
81  * @index: The doorbell index of the requester.
82  *
83  * returns: The cookie that is transparent to the caller. Passed
84  * back when calling mic_free_irq. An appropriate error code
85  * is returned on failure. Caller needs to use IS_ERR(return_val)
86  * to check for failure and PTR_ERR(return_val) to obtained the
87  * error code.
88  *
89  */
90 struct mic_irq *
mic_request_card_irq(irq_handler_t handler,irq_handler_t thread_fn,const char * name,void * data,int index)91 mic_request_card_irq(irq_handler_t handler,
92 		     irq_handler_t thread_fn, const char *name,
93 		     void *data, int index)
94 {
95 	int rc = 0;
96 	unsigned long cookie;
97 	struct mic_driver *mdrv = g_drv;
98 
99 	rc  = request_threaded_irq(mic_db_to_irq(mdrv, index), handler,
100 				   thread_fn, 0, name, data);
101 	if (rc) {
102 		dev_err(mdrv->dev, "request_threaded_irq failed rc = %d\n", rc);
103 		goto err;
104 	}
105 	mdrv->irq_info.irq_usage_count[index]++;
106 	cookie = index;
107 	return (struct mic_irq *)cookie;
108 err:
109 	return ERR_PTR(rc);
110 }
111 
112 /**
113  * mic_free_card_irq - free irq.
114  *
115  * @cookie: cookie obtained during a successful call to mic_request_threaded_irq
116  * @data: private data specified by the calling function during the
117  * mic_request_threaded_irq
118  *
119  * returns: none.
120  */
mic_free_card_irq(struct mic_irq * cookie,void * data)121 void mic_free_card_irq(struct mic_irq *cookie, void *data)
122 {
123 	int index;
124 	struct mic_driver *mdrv = g_drv;
125 
126 	index = (unsigned long)cookie & 0xFFFFU;
127 	free_irq(mic_db_to_irq(mdrv, index), data);
128 	mdrv->irq_info.irq_usage_count[index]--;
129 }
130 
131 /**
132  * mic_next_card_db - Get the doorbell with minimum usage count.
133  *
134  * Returns the irq index.
135  */
mic_next_card_db(void)136 int mic_next_card_db(void)
137 {
138 	int i;
139 	int index = 0;
140 	struct mic_driver *mdrv = g_drv;
141 
142 	for (i = 0; i < mdrv->intr_info.num_intr; i++) {
143 		if (mdrv->irq_info.irq_usage_count[i] <
144 			mdrv->irq_info.irq_usage_count[index])
145 			index = i;
146 	}
147 
148 	return index;
149 }
150 
151 /**
152  * mic_init_irq - Initialize irq information.
153  *
154  * Returns 0 in success. Appropriate error code on failure.
155  */
mic_init_irq(void)156 static int mic_init_irq(void)
157 {
158 	struct mic_driver *mdrv = g_drv;
159 
160 	mdrv->irq_info.irq_usage_count = kzalloc((sizeof(u32) *
161 			mdrv->intr_info.num_intr),
162 			GFP_KERNEL);
163 	if (!mdrv->irq_info.irq_usage_count)
164 		return -ENOMEM;
165 	return 0;
166 }
167 
168 /**
169  * mic_uninit_irq - Uninitialize irq information.
170  *
171  * None.
172  */
mic_uninit_irq(void)173 static void mic_uninit_irq(void)
174 {
175 	struct mic_driver *mdrv = g_drv;
176 
177 	kfree(mdrv->irq_info.irq_usage_count);
178 }
179 
scdev_to_mdrv(struct scif_hw_dev * scdev)180 static inline struct mic_driver *scdev_to_mdrv(struct scif_hw_dev *scdev)
181 {
182 	return dev_get_drvdata(scdev->dev.parent);
183 }
184 
185 static struct mic_irq *
___mic_request_irq(struct scif_hw_dev * scdev,irqreturn_t (* func)(int irq,void * data),const char * name,void * data,int db)186 ___mic_request_irq(struct scif_hw_dev *scdev,
187 		   irqreturn_t (*func)(int irq, void *data),
188 				       const char *name, void *data,
189 				       int db)
190 {
191 	return mic_request_card_irq(func, NULL, name, data, db);
192 }
193 
194 static void
___mic_free_irq(struct scif_hw_dev * scdev,struct mic_irq * cookie,void * data)195 ___mic_free_irq(struct scif_hw_dev *scdev,
196 		struct mic_irq *cookie, void *data)
197 {
198 	return mic_free_card_irq(cookie, data);
199 }
200 
___mic_ack_interrupt(struct scif_hw_dev * scdev,int num)201 static void ___mic_ack_interrupt(struct scif_hw_dev *scdev, int num)
202 {
203 	struct mic_driver *mdrv = scdev_to_mdrv(scdev);
204 
205 	mic_ack_interrupt(&mdrv->mdev);
206 }
207 
___mic_next_db(struct scif_hw_dev * scdev)208 static int ___mic_next_db(struct scif_hw_dev *scdev)
209 {
210 	return mic_next_card_db();
211 }
212 
___mic_send_intr(struct scif_hw_dev * scdev,int db)213 static void ___mic_send_intr(struct scif_hw_dev *scdev, int db)
214 {
215 	struct mic_driver *mdrv = scdev_to_mdrv(scdev);
216 
217 	mic_send_intr(&mdrv->mdev, db);
218 }
219 
___mic_send_p2p_intr(struct scif_hw_dev * scdev,int db,struct mic_mw * mw)220 static void ___mic_send_p2p_intr(struct scif_hw_dev *scdev, int db,
221 				 struct mic_mw *mw)
222 {
223 	mic_send_p2p_intr(db, mw);
224 }
225 
226 static void __iomem *
___mic_ioremap(struct scif_hw_dev * scdev,phys_addr_t pa,size_t len)227 ___mic_ioremap(struct scif_hw_dev *scdev,
228 	       phys_addr_t pa, size_t len)
229 {
230 	struct mic_driver *mdrv = scdev_to_mdrv(scdev);
231 
232 	return mic_card_map(&mdrv->mdev, pa, len);
233 }
234 
___mic_iounmap(struct scif_hw_dev * scdev,void __iomem * va)235 static void ___mic_iounmap(struct scif_hw_dev *scdev, void __iomem *va)
236 {
237 	struct mic_driver *mdrv = scdev_to_mdrv(scdev);
238 
239 	mic_card_unmap(&mdrv->mdev, va);
240 }
241 
242 static struct scif_hw_ops scif_hw_ops = {
243 	.request_irq = ___mic_request_irq,
244 	.free_irq = ___mic_free_irq,
245 	.ack_interrupt = ___mic_ack_interrupt,
246 	.next_db = ___mic_next_db,
247 	.send_intr = ___mic_send_intr,
248 	.send_p2p_intr = ___mic_send_p2p_intr,
249 	.ioremap = ___mic_ioremap,
250 	.iounmap = ___mic_iounmap,
251 };
252 
mic_request_dma_chans(struct mic_driver * mdrv)253 static int mic_request_dma_chans(struct mic_driver *mdrv)
254 {
255 	dma_cap_mask_t mask;
256 	struct dma_chan *chan;
257 
258 	request_module("mic_x100_dma");
259 	dma_cap_zero(mask);
260 	dma_cap_set(DMA_MEMCPY, mask);
261 
262 	do {
263 		chan = dma_request_channel(mask, NULL, NULL);
264 		if (chan) {
265 			mdrv->dma_ch[mdrv->num_dma_ch++] = chan;
266 			if (mdrv->num_dma_ch >= MIC_MAX_DMA_CHAN)
267 				break;
268 		}
269 	} while (chan);
270 	dev_info(mdrv->dev, "DMA channels # %d\n", mdrv->num_dma_ch);
271 	return mdrv->num_dma_ch;
272 }
273 
mic_free_dma_chans(struct mic_driver * mdrv)274 static void mic_free_dma_chans(struct mic_driver *mdrv)
275 {
276 	int i = 0;
277 
278 	for (i = 0; i < mdrv->num_dma_ch; i++) {
279 		dma_release_channel(mdrv->dma_ch[i]);
280 		mdrv->dma_ch[i] = NULL;
281 	}
282 	mdrv->num_dma_ch = 0;
283 }
284 
285 /*
286  * mic_driver_init - MIC driver initialization tasks.
287  *
288  * Returns 0 in success. Appropriate error code on failure.
289  */
mic_driver_init(struct mic_driver * mdrv)290 int __init mic_driver_init(struct mic_driver *mdrv)
291 {
292 	int rc;
293 	struct mic_bootparam __iomem *bootparam;
294 	u8 node_id;
295 
296 	g_drv = mdrv;
297 	/* Unloading the card module is not supported. */
298 	if (!try_module_get(mdrv->dev->driver->owner)) {
299 		rc = -ENODEV;
300 		goto done;
301 	}
302 	rc = mic_dp_init();
303 	if (rc)
304 		goto put;
305 	rc = mic_init_irq();
306 	if (rc)
307 		goto dp_uninit;
308 	if (!mic_request_dma_chans(mdrv)) {
309 		rc = -ENODEV;
310 		goto irq_uninit;
311 	}
312 	rc = mic_devices_init(mdrv);
313 	if (rc)
314 		goto dma_free;
315 	bootparam = mdrv->dp;
316 	node_id = ioread8(&bootparam->node_id);
317 	mdrv->scdev = scif_register_device(mdrv->dev, MIC_SCIF_DEV,
318 					   NULL, &scif_hw_ops,
319 					   0, node_id, &mdrv->mdev.mmio, NULL,
320 					   NULL, mdrv->dp, mdrv->dma_ch,
321 					   mdrv->num_dma_ch, true);
322 	if (IS_ERR(mdrv->scdev)) {
323 		rc = PTR_ERR(mdrv->scdev);
324 		goto device_uninit;
325 	}
326 	mic_create_card_debug_dir(mdrv);
327 done:
328 	return rc;
329 device_uninit:
330 	mic_devices_uninit(mdrv);
331 dma_free:
332 	mic_free_dma_chans(mdrv);
333 irq_uninit:
334 	mic_uninit_irq();
335 dp_uninit:
336 	mic_dp_uninit();
337 put:
338 	module_put(mdrv->dev->driver->owner);
339 	return rc;
340 }
341 
342 /*
343  * mic_driver_uninit - MIC driver uninitialization tasks.
344  *
345  * Returns None
346  */
mic_driver_uninit(struct mic_driver * mdrv)347 void mic_driver_uninit(struct mic_driver *mdrv)
348 {
349 	mic_delete_card_debug_dir(mdrv);
350 	scif_unregister_device(mdrv->scdev);
351 	mic_devices_uninit(mdrv);
352 	mic_free_dma_chans(mdrv);
353 	mic_uninit_irq();
354 	mic_dp_uninit();
355 	module_put(mdrv->dev->driver->owner);
356 }
357