xref: /haiku/src/add-ons/kernel/drivers/graphics/intel_extreme/driver.cpp (revision 7457ccb4b2f4786525d3b7bda42598487d57ab7d)
1 /*
2  * Copyright 2006-2009, Haiku, Inc. All Rights Reserved.
3  * Distributed under the terms of the MIT License.
4  *
5  * Authors:
6  *		Axel Dörfler, axeld@pinc-software.de
7  */
8 
9 
10 #include "driver.h"
11 #include "device.h"
12 #include "lock.h"
13 
14 #include <stdlib.h>
15 #include <stdio.h>
16 #include <string.h>
17 
18 #include <AGP.h>
19 #include <KernelExport.h>
20 #include <OS.h>
21 #include <PCI.h>
22 #include <SupportDefs.h>
23 
24 
25 #define TRACE_DRIVER
26 #ifdef TRACE_DRIVER
27 #	define TRACE(x...) dprintf("intel_extreme: " x)
28 #else
29 #	define TRACE(x) ;
30 #endif
31 
32 #define ERROR(x...) dprintf("intel_extreme: " x)
33 #define CALLED(x...) TRACE("CALLED %s\n", __PRETTY_FUNCTION__)
34 
35 
36 #define MAX_CARDS 4
37 
38 
39 // list of supported devices
40 const struct supported_device {
41 	uint32		device_id;
42 	int32		type;
43 	const char*	name;
44 } kSupportedDevices[] = {
45 	{0x3577, INTEL_GROUP_83x, "i830GM"},
46 	{0x2562, INTEL_GROUP_83x, "i845G"},
47 
48 	{0x2572, INTEL_GROUP_85x, "i865G"},
49 	{0x3582, INTEL_GROUP_85x, "i855G"},
50 	{0x358e, INTEL_GROUP_85x, "i855G"},
51 
52 	{0x2582, INTEL_MODEL_915, "i915G"},
53 	{0x258a, INTEL_MODEL_915, "i915"},
54 	{0x2592, INTEL_MODEL_915M, "i915GM"},
55 	{0x2792, INTEL_MODEL_915, "i910"},
56 	{0x2772, INTEL_MODEL_945, "i945G"},
57 	{0x27a2, INTEL_MODEL_945M, "i945GM"},
58 	{0x27ae, INTEL_MODEL_945M, "i945GME"},
59 	{0x2972, INTEL_MODEL_965, "i946G"},
60 	{0x2982, INTEL_MODEL_965, "G35"},
61 	{0x2992, INTEL_MODEL_965, "i965Q"},
62 	{0x29a2, INTEL_MODEL_965, "i965G"},
63 	{0x2a02, INTEL_MODEL_965M, "i965GM"},
64 	{0x2a12, INTEL_MODEL_965M, "i965GME"},
65 	{0x29b2, INTEL_MODEL_G33, "G33G"},
66 	{0x29c2, INTEL_MODEL_G33, "Q35G"},
67 	{0x29d2, INTEL_MODEL_G33, "Q33G"},
68 
69 	{0x2a42, INTEL_MODEL_GM45, "GM45"},
70 	{0x2e02, INTEL_MODEL_G45, "IGD"},
71 	{0x2e12, INTEL_MODEL_G45, "Q45"},
72 	{0x2e22, INTEL_MODEL_G45, "G45"},
73 	{0x2e32, INTEL_MODEL_G45, "G41"},
74 	{0x2e42, INTEL_MODEL_G45, "B43"},
75 	{0x2e92, INTEL_MODEL_G45, "B43"},
76 
77 	{0xa001, INTEL_MODEL_PINE, "Atom D4xx"},
78 	{0xa002, INTEL_MODEL_PINE, "Atom D5xx"},
79 	{0xa011, INTEL_MODEL_PINEM, "Atom N4xx"},
80 	{0xa012, INTEL_MODEL_PINEM, "Atom N5xx"},
81 
82 	{0x0042, INTEL_MODEL_ILKG, "IronLake Desktop"},
83 	{0x0046, INTEL_MODEL_ILKGM, "IronLake Mobile"},
84 	{0x0046, INTEL_MODEL_ILKGM, "IronLake Mobile"},
85 	{0x0046, INTEL_MODEL_ILKGM, "IronLake Mobile"},
86 
87 	{0x0102, INTEL_MODEL_SNBG, "SandyBridge Desktop GT1"},
88 	{0x0112, INTEL_MODEL_SNBG, "SandyBridge Desktop GT2"},
89 	{0x0122, INTEL_MODEL_SNBG, "SandyBridge Desktop GT2+"},
90 	{0x0106, INTEL_MODEL_SNBGM, "SandyBridge Mobile GT1"},
91 	{0x0116, INTEL_MODEL_SNBGM, "SandyBridge Mobile GT2"},
92 	{0x0126, INTEL_MODEL_SNBGM, "SandyBridge Mobile GT2+"},
93 	{0x010a, INTEL_MODEL_SNBGS, "SandyBridge Server"},
94 
95 	{0x0152, INTEL_MODEL_IVBG, "IvyBridge Desktop GT1"},
96 	{0x0162, INTEL_MODEL_IVBG, "IvyBridge Desktop GT2"},
97 	{0x0156, INTEL_MODEL_IVBGM, "IvyBridge Mobile GT1"},
98 	{0x0166, INTEL_MODEL_IVBGM, "IvyBridge Mobile GT2"},
99 	{0x015a, INTEL_MODEL_IVBGS, "IvyBridge Server GT1"},
100 	{0x016a, INTEL_MODEL_IVBGS, "IvyBridge Server GT2"},
101 
102 	{0x0412, INTEL_MODEL_HAS, "Haswell Desktop"},
103 	{0x0416, INTEL_MODEL_HASM, "Haswell Mobile"},
104 	{0x0d26, INTEL_MODEL_HASM, "Haswell Mobile"},
105 	{0x0a16, INTEL_MODEL_HASM, "Haswell Mobile"},
106 
107 	{0x0155, INTEL_MODEL_VLV, "ValleyView Desktop"},
108 	{0x0f30, INTEL_MODEL_VLVM, "ValleyView Mobile"},
109 	{0x0f31, INTEL_MODEL_VLVM, "ValleyView Mobile"},
110 	{0x0f32, INTEL_MODEL_VLVM, "ValleyView Mobile"},
111 	{0x0f33, INTEL_MODEL_VLVM, "ValleyView Mobile"},
112 	{0x0157, INTEL_MODEL_VLVM, "ValleyView Mobile"},
113 
114 //	{0x1616, INTEL_MODEL_BDWM, "HD Graphics 5500 (Broadwell GT2)"},
115 
116 	{0x1902, INTEL_MODEL_SKY,  "Skylake GT1"},
117 	{0x1906, INTEL_MODEL_SKYM, "Skylake GT1"},
118 	{0x190a, INTEL_MODEL_SKYS, "Skylake GT1"},
119 	{0x190b, INTEL_MODEL_SKY,  "Skylake GT1"},
120 	{0x190e, INTEL_MODEL_SKYM, "Skylake GT1"},
121 	{0x1912, INTEL_MODEL_SKY,  "Skylake GT2"},
122 	{0x1916, INTEL_MODEL_SKYM, "Skylake GT2"},
123 	{0x191a, INTEL_MODEL_SKYS, "Skylake GT2"},
124 	{0x191b, INTEL_MODEL_SKY,  "Skylake GT2"},
125 	{0x191d, INTEL_MODEL_SKY,  "Skylake GT2"},
126 	{0x191e, INTEL_MODEL_SKYM, "Skylake GT2"},
127 	{0x1921, INTEL_MODEL_SKYM, "Skylake GT2F"},
128 	{0x1926, INTEL_MODEL_SKYM, "Skylake GT3"},
129 	{0x192a, INTEL_MODEL_SKYS, "Skylake GT3"},
130 	{0x192b, INTEL_MODEL_SKY,  "Skylake GT3"},
131 };
132 
133 int32 api_version = B_CUR_DRIVER_API_VERSION;
134 
135 char* gDeviceNames[MAX_CARDS + 1];
136 intel_info* gDeviceInfo[MAX_CARDS];
137 pci_module_info* gPCI;
138 pci_x86_module_info* gPCIx86Module = NULL;
139 agp_gart_module_info* gGART;
140 mutex gLock;
141 
142 
143 static status_t
144 get_next_intel_extreme(int32* _cookie, pci_info &info, uint32 &type)
145 {
146 	int32 index = *_cookie;
147 
148 	// find devices
149 
150 	for (; gPCI->get_nth_pci_info(index, &info) == B_OK; index++) {
151 		// check vendor
152 		if (info.vendor_id != VENDOR_ID_INTEL
153 			|| info.class_base != PCI_display
154 			|| info.class_sub != PCI_vga)
155 			continue;
156 
157 		// check device
158 		for (uint32 i = 0; i < sizeof(kSupportedDevices)
159 				/ sizeof(kSupportedDevices[0]); i++) {
160 			if (info.device_id == kSupportedDevices[i].device_id) {
161 				type = i;
162 				*_cookie = index + 1;
163 				return B_OK;
164 			}
165 		}
166 	}
167 
168 	return B_ENTRY_NOT_FOUND;
169 }
170 
171 
172 static enum pch_info
173 detect_intel_pch()
174 {
175 	pci_info info;
176 
177 	// find devices
178 	for (int32 i = 0; gPCI->get_nth_pci_info(i, &info) == B_OK; i++) {
179 		// check vendor
180 		if (info.vendor_id != VENDOR_ID_INTEL
181 			|| info.class_base != PCI_bridge
182 			|| info.class_sub != PCI_isa) {
183 			continue;
184 		}
185 
186 		// check device
187 		unsigned short id = info.device_id & INTEL_PCH_DEVICE_ID_MASK;
188 		switch(id) {
189 			case INTEL_PCH_IBX_DEVICE_ID:
190 				ERROR("%s: Found Ibex Peak PCH\n", __func__);
191 				return INTEL_PCH_IBX;
192 			case INTEL_PCH_CPT_DEVICE_ID:
193 				ERROR("%s: Found CougarPoint PCH\n", __func__);
194 				return INTEL_PCH_CPT;
195 			case INTEL_PCH_PPT_DEVICE_ID:
196 				ERROR("%s: Found PantherPoint PCH\n", __func__);
197 				return INTEL_PCH_CPT;
198 			case INTEL_PCH_LPT_DEVICE_ID:
199 			case INTEL_PCH_LPT_LP_DEVICE_ID:
200 			case INTEL_PCH_WPT_DEVICE_ID:
201 			case INTEL_PCH_WPT_LP_DEVICE_ID:
202 				// WildcatPoint is LPT compatible
203 				ERROR("%s: Found LynxPoint PCH\n", __func__);
204 				return INTEL_PCH_LPT;
205 			case INTEL_PCH_SPT_DEVICE_ID:
206 			case INTEL_PCH_SPT_LP_DEVICE_ID:
207 				ERROR("%s: Found SunrisePoint PCH\n", __func__);
208 				return INTEL_PCH_SPT;
209 			case INTEL_PCH_KBP_DEVICE_ID:
210 				ERROR("%s: Found Kaby Lake PCH\n", __func__);
211 				return INTEL_PCH_KBP;
212 			case INTEL_PCH_CNP_DEVICE_ID:
213 			case INTEL_PCH_CNP_LP_DEVICE_ID:
214 				ERROR("%s: Found Cannon Lake PCH\n", __func__);
215 				return INTEL_PCH_CNP;
216 			case INTEL_PCH_ICP_DEVICE_ID:
217 				ERROR("%s: Found Ice Lake PCH\n", __func__);
218 				return INTEL_PCH_ICP;
219 		}
220 	}
221 
222 	ERROR("%s: No PCH detected.\n", __func__);
223 	return INTEL_PCH_NONE;
224 }
225 
226 
227 extern "C" const char**
228 publish_devices(void)
229 {
230 	CALLED();
231 	return (const char**)gDeviceNames;
232 }
233 
234 
235 extern "C" status_t
236 init_hardware(void)
237 {
238 	CALLED();
239 
240 	status_t status = get_module(B_PCI_MODULE_NAME,(module_info**)&gPCI);
241 	if (status != B_OK) {
242 		ERROR("pci module unavailable\n");
243 		return status;
244 	}
245 
246 	int32 cookie = 0;
247 	uint32 type;
248 	pci_info info;
249 	status = get_next_intel_extreme(&cookie, info, type);
250 
251 	put_module(B_PCI_MODULE_NAME);
252 	return status;
253 }
254 
255 
256 extern "C" status_t
257 init_driver(void)
258 {
259 	CALLED();
260 
261 	status_t status = get_module(B_PCI_MODULE_NAME, (module_info**)&gPCI);
262 	if (status != B_OK) {
263 		ERROR("pci module unavailable\n");
264 		return status;
265 	}
266 
267 	status = get_module(B_AGP_GART_MODULE_NAME, (module_info**)&gGART);
268 	if (status != B_OK) {
269 		ERROR("AGP GART module unavailable\n");
270 		put_module(B_PCI_MODULE_NAME);
271 		return status;
272 	}
273 
274 	mutex_init(&gLock, "intel extreme ksync");
275 
276 	// Try to get the PCI x86 module as well so we can enable possible MSIs.
277 	if (get_module(B_PCI_X86_MODULE_NAME,
278 			(module_info **)&gPCIx86Module) != B_OK) {
279 		ERROR("failed to get pci x86 module\n");
280 		gPCIx86Module = NULL;
281 	}
282 
283 	// find the PCH device (if any)
284 	enum pch_info pchInfo = detect_intel_pch();
285 
286 	// find devices
287 
288 	int32 found = 0;
289 
290 	for (int32 cookie = 0; found < MAX_CARDS;) {
291 		pci_info* info = (pci_info*)malloc(sizeof(pci_info));
292 		if (info == NULL)
293 			break;
294 
295 		uint32 type;
296 		status = get_next_intel_extreme(&cookie, *info, type);
297 		if (status < B_OK) {
298 			free(info);
299 			break;
300 		}
301 
302 		// create device names & allocate device info structure
303 
304 		char name[64];
305 		sprintf(name, "graphics/intel_extreme_%02x%02x%02x",
306 			 info->bus, info->device,
307 			 info->function);
308 
309 		gDeviceNames[found] = strdup(name);
310 		if (gDeviceNames[found] == NULL)
311 			break;
312 
313 		gDeviceInfo[found] = (intel_info*)malloc(sizeof(intel_info));
314 		if (gDeviceInfo[found] == NULL) {
315 			free(gDeviceNames[found]);
316 			break;
317 		}
318 
319 		// initialize the structure for later use
320 
321 		memset(gDeviceInfo[found], 0, sizeof(intel_info));
322 		gDeviceInfo[found]->init_status = B_NO_INIT;
323 		gDeviceInfo[found]->id = found;
324 		gDeviceInfo[found]->pci = info;
325 		gDeviceInfo[found]->registers = info->u.h0.base_registers[0];
326 		gDeviceInfo[found]->device_identifier = kSupportedDevices[type].name;
327 		gDeviceInfo[found]->device_type = kSupportedDevices[type].type;
328 		gDeviceInfo[found]->pch_info = pchInfo;
329 
330 		dprintf(DEVICE_NAME ": (%" B_PRId32 ") %s, revision = 0x%x\n", found,
331 			kSupportedDevices[type].name, info->revision);
332 
333 		found++;
334 	}
335 
336 	gDeviceNames[found] = NULL;
337 
338 	if (found == 0) {
339 		mutex_destroy(&gLock);
340 		put_module(B_AGP_GART_MODULE_NAME);
341 		put_module(B_PCI_MODULE_NAME);
342 		if (gPCIx86Module != NULL) {
343 			gPCIx86Module = NULL;
344 			put_module(B_PCI_X86_MODULE_NAME);
345 		}
346 		return ENODEV;
347 	}
348 
349 	return B_OK;
350 }
351 
352 
353 extern "C" void
354 uninit_driver(void)
355 {
356 	CALLED();
357 
358 	mutex_destroy(&gLock);
359 
360 	// free device related structures
361 	char* name;
362 	for (int32 index = 0; (name = gDeviceNames[index]) != NULL; index++) {
363 		free(gDeviceInfo[index]);
364 		free(name);
365 	}
366 
367 	put_module(B_AGP_GART_MODULE_NAME);
368 	put_module(B_PCI_MODULE_NAME);
369 	if (gPCIx86Module != NULL) {
370 		gPCIx86Module = NULL;
371 		put_module(B_PCI_X86_MODULE_NAME);
372 	}
373 }
374 
375 
376 extern "C" device_hooks*
377 find_device(const char* name)
378 {
379 	CALLED();
380 
381 	int index;
382 	for (index = 0; gDeviceNames[index] != NULL; index++) {
383 		if (!strcmp(name, gDeviceNames[index]))
384 			return &gDeviceHooks;
385 	}
386 
387 	return NULL;
388 }
389