xref: /rk3399_ARM-atf/common/feat_detect.c (revision 240770989f618da1b015f9a580fe0c83e10688a2)
1 /*
2  * Copyright (c) 2022, Arm Limited and Contributors. All rights reserved.
3  *
4  * SPDX-License-Identifier: BSD-3-Clause
5  */
6 
7 #include <arch_features.h>
8 #include <common/debug.h>
9 #include <common/feat_detect.h>
10 
11 static bool tainted;
12 
13 /*******************************************************************************
14  * This section lists the wrapper modules for each feature to evaluate the
15  * feature states (FEAT_STATE_ALWAYS and FEAT_STATE_CHECK) and perform
16  * necessary action as below:
17  *
18  * It verifies whether the FEAT_XXX (eg: FEAT_SB) is supported by the PE or not.
19  * Without this check an exception would occur during context save/restore
20  * routines, if the feature is enabled but not supported by PE.
21  ******************************************************************************/
22 
23 #define feat_detect_panic(a, b)		((a) ? (void)0 : feature_panic(b))
24 
25 /*******************************************************************************
26  * Function : feature_panic
27  * Customised panic function with error logging mechanism to list the feature
28  * not supported by the PE.
29  ******************************************************************************/
30 static inline void feature_panic(char *feat_name)
31 {
32 	ERROR("FEAT_%s not supported by the PE\n", feat_name);
33 	panic();
34 }
35 
36 /*******************************************************************************
37  * Function : check_feature
38  * Check for a valid combination of build time flags (ENABLE_FEAT_xxx) and
39  * feature availability on the hardware. <min> is the smallest feature
40  * ID field value that is required for that feature.
41  * Triggers a panic later if a feature is forcefully enabled, but not
42  * available on the PE. Also will panic if the hardware feature ID field
43  * is larger than the maximum known and supported number, specified by <max>.
44  *
45  * We force inlining here to let the compiler optimise away the whole check
46  * if the feature is disabled at build time (FEAT_STATE_DISABLED).
47  ******************************************************************************/
48 static inline void __attribute((__always_inline__))
49 check_feature(int state, unsigned long field, const char *feat_name,
50 	      unsigned int min, unsigned int max)
51 {
52 	if (state == FEAT_STATE_ALWAYS && field < min) {
53 		ERROR("FEAT_%s not supported by the PE\n", feat_name);
54 		tainted = true;
55 	}
56 	if (state >= FEAT_STATE_ALWAYS && field > max) {
57 		ERROR("FEAT_%s is version %ld, but is only known up to version %d\n",
58 		      feat_name, field, max);
59 		tainted = true;
60 	}
61 }
62 
63 /******************************************************
64  * Feature : FEAT_CSV2_2 (Cache Speculation Variant 2)
65  *****************************************************/
66 static void read_feat_csv2_2(void)
67 {
68 #if (ENABLE_FEAT_CSV2_2 == FEAT_STATE_ALWAYS)
69 	feat_detect_panic(is_armv8_0_feat_csv2_2_present(), "CSV2_2");
70 #endif
71 }
72 
73 /***********************************************
74  * Feature : FEAT_PAN (Privileged Access Never)
75  **********************************************/
76 static void read_feat_pan(void)
77 {
78 #if (ENABLE_FEAT_PAN == FEAT_STATE_ALWAYS)
79 	feat_detect_panic(is_armv8_1_pan_present(), "PAN");
80 #endif
81 }
82 
83 /*******************************************************************************
84  * Feature : FEAT_RAS (Reliability, Availability, and Serviceability Extension)
85  ******************************************************************************/
86 static void read_feat_ras(void)
87 {
88 #if (RAS_EXTENSION == FEAT_STATE_ALWAYS)
89 	feat_detect_panic(is_armv8_2_feat_ras_present(), "RAS");
90 #endif
91 }
92 
93 /************************************************
94  * Feature : FEAT_PAUTH (Pointer Authentication)
95  ***********************************************/
96 static void read_feat_pauth(void)
97 {
98 #if (ENABLE_PAUTH == FEAT_STATE_ALWAYS) || (CTX_INCLUDE_PAUTH_REGS == FEAT_STATE_ALWAYS)
99 	feat_detect_panic(is_armv8_3_pauth_present(), "PAUTH");
100 #endif
101 }
102 
103 /************************************************************
104  * Feature : FEAT_DIT (Data Independent Timing Instructions)
105  ***********************************************************/
106 static void read_feat_dit(void)
107 {
108 #if (ENABLE_FEAT_DIT == FEAT_STATE_ALWAYS)
109 	feat_detect_panic(is_armv8_4_feat_dit_present(), "DIT");
110 #endif
111 }
112 
113 /**************************************************************
114  * Feature : FEAT_NV2 (Enhanced Nested Virtualization Support)
115  *************************************************************/
116 static void read_feat_nv2(void)
117 {
118 #if (CTX_INCLUDE_NEVE_REGS == FEAT_STATE_ALWAYS)
119 	unsigned int nv = get_armv8_4_feat_nv_support();
120 
121 	feat_detect_panic((nv == ID_AA64MMFR2_EL1_NV2_SUPPORTED), "NV2");
122 #endif
123 }
124 
125 /***********************************
126  * Feature : FEAT_SEL2 (Secure EL2)
127  **********************************/
128 static void read_feat_sel2(void)
129 {
130 #if (ENABLE_FEAT_SEL2 == FEAT_STATE_ALWAYS)
131 	feat_detect_panic(is_armv8_4_sel2_present(), "SEL2");
132 #endif
133 }
134 
135 /************************************************
136  * Feature : FEAT_MTE (Memory Tagging Extension)
137  ***********************************************/
138 static void read_feat_mte(void)
139 {
140 #if (CTX_INCLUDE_MTE_REGS == FEAT_STATE_ALWAYS)
141 	unsigned int mte = get_armv8_5_mte_support();
142 
143 	feat_detect_panic((mte != MTE_UNIMPLEMENTED), "MTE");
144 #endif
145 }
146 
147 /***********************************************
148  * Feature : FEAT_RNG (Random Number Generator)
149  **********************************************/
150 static void read_feat_rng(void)
151 {
152 #if (ENABLE_FEAT_RNG == FEAT_STATE_ALWAYS)
153 	feat_detect_panic(is_armv8_5_rng_present(), "RNG");
154 #endif
155 }
156 
157 /****************************************************
158  * Feature : FEAT_BTI (Branch Target Identification)
159  ***************************************************/
160 static void read_feat_bti(void)
161 {
162 #if (ENABLE_BTI == FEAT_STATE_ALWAYS)
163 	feat_detect_panic(is_armv8_5_bti_present(), "BTI");
164 #endif
165 }
166 
167 /***********************************************
168  * Feature : FEAT_AMUv1p1 (AMU Extensions v1.1)
169  **********************************************/
170 static void read_feat_amuv1p1(void)
171 {
172 #if (ENABLE_FEAT_AMUv1p1 == FEAT_STATE_ALWAYS)
173 	feat_detect_panic(is_armv8_6_feat_amuv1p1_present(), "AMUv1p1");
174 #endif
175 }
176 
177 /*******************************************************
178  * Feature : FEAT_ECV (Enhanced Counter Virtualization)
179  ******************************************************/
180 static void read_feat_ecv(void)
181 {
182 #if (ENABLE_FEAT_ECV == FEAT_STATE_ALWAYS)
183 	unsigned int ecv = get_armv8_6_ecv_support();
184 
185 	feat_detect_panic(((ecv == ID_AA64MMFR0_EL1_ECV_SUPPORTED) ||
186 			(ecv == ID_AA64MMFR0_EL1_ECV_SELF_SYNCH)), "ECV");
187 #endif
188 }
189 
190 /***********************************************************
191  * Feature : FEAT_TWED (Delayed Trapping of WFE Instruction)
192  **********************************************************/
193 static void read_feat_twed(void)
194 {
195 #if (ENABLE_FEAT_TWED == FEAT_STATE_ALWAYS)
196 	feat_detect_panic(is_armv8_6_twed_present(), "TWED");
197 #endif
198 }
199 
200 /**************************************************
201  * Feature : FEAT_RME (Realm Management Extension)
202  *************************************************/
203 static void read_feat_rme(void)
204 {
205 #if (ENABLE_RME == FEAT_STATE_ALWAYS)
206 	feat_detect_panic((get_armv9_2_feat_rme_support() !=
207 			ID_AA64PFR0_FEAT_RME_NOT_SUPPORTED), "RME");
208 #endif
209 }
210 
211 /******************************************************************
212  * Feature : FEAT_RNG_TRAP (Trapping support for RNDR/RNDRRS)
213  *****************************************************************/
214 static void read_feat_rng_trap(void)
215 {
216 #if (ENABLE_FEAT_RNG_TRAP == FEAT_STATE_ALWAYS)
217 	feat_detect_panic(is_feat_rng_trap_present(), "RNG_TRAP");
218 #endif
219 }
220 
221 /***********************************************************************************
222  * TF-A supports many Arm architectural features starting from arch version
223  * (8.0 till 8.7+). These features are mostly enabled through build flags. This
224  * mechanism helps in validating these build flags in the early boot phase
225  * either in BL1 or BL31 depending on the platform and assists in identifying
226  * and notifying the features which are enabled but not supported by the PE.
227  *
228  * It reads all the enabled features ID-registers and ensures the features
229  * are supported by the PE.
230  * In case if they aren't it stops booting at an early phase and logs the error
231  * messages, notifying the platforms about the features that are not supported.
232  *
233  * Further the procedure is implemented with a tri-state approach for each feature:
234  * ENABLE_FEAT_xxx = 0 : The feature is disabled statically at compile time
235  * ENABLE_FEAT_xxx = 1 : The feature is enabled and must be present in hardware.
236  *                       There will be panic if feature is not present at cold boot.
237  * ENABLE_FEAT_xxx = 2 : The feature is enabled but dynamically enabled at runtime
238  *                       depending on hardware capability.
239  *
240  * For better readability, state values are defined with macros, namely:
241  * { FEAT_STATE_DISABLED, FEAT_STATE_ALWAYS, FEAT_STATE_CHECK }, taking values
242  * { 0, 1, 2 }, respectively, as their naming.
243  **********************************************************************************/
244 void detect_arch_features(void)
245 {
246 	tainted = false;
247 
248 	/* v8.0 features */
249 	check_feature(ENABLE_FEAT_SB, read_feat_sb_id_field(), "SB", 1, 1);
250 	read_feat_csv2_2();
251 
252 	/* v8.1 features */
253 	read_feat_pan();
254 	check_feature(ENABLE_FEAT_VHE, read_feat_vhe_id_field(), "VHE", 1, 1);
255 
256 	/* v8.2 features */
257 	read_feat_ras();
258 
259 	/* v8.3 features */
260 	read_feat_pauth();
261 
262 	/* v8.4 features */
263 	read_feat_dit();
264 	check_feature(ENABLE_FEAT_AMUv1, read_feat_amu_id_field(),
265 		      "AMUv1", 1, 2);
266 	check_feature(ENABLE_MPAM_FOR_LOWER_ELS, read_feat_mpam_version(),
267 		      "MPAM", 1, 17);
268 	read_feat_nv2();
269 	read_feat_sel2();
270 	check_feature(ENABLE_TRF_FOR_NS, read_feat_trf_id_field(),
271 		      "TRF", 1, 1);
272 
273 	/* v8.5 features */
274 	read_feat_mte();
275 	read_feat_rng();
276 	read_feat_bti();
277 	read_feat_rng_trap();
278 
279 	/* v8.6 features */
280 	read_feat_amuv1p1();
281 	check_feature(ENABLE_FEAT_FGT, read_feat_fgt_id_field(), "FGT", 1, 1);
282 	read_feat_ecv();
283 	read_feat_twed();
284 
285 	/* v8.7 features */
286 	check_feature(ENABLE_FEAT_HCX, read_feat_hcx_id_field(), "HCX", 1, 1);
287 
288 	/* v8.9 features */
289 	check_feature(ENABLE_FEAT_TCR2, read_feat_tcrx_id_field(),
290 		      "TCR2", 1, 1);
291 
292 	/* v9.0 features */
293 	check_feature(ENABLE_BRBE_FOR_NS, read_feat_brbe_id_field(),
294 		      "BRBE", 1, 2);
295 	check_feature(ENABLE_TRBE_FOR_NS, read_feat_trbe_id_field(),
296 		      "TRBE", 1, 1);
297 
298 	/* v9.2 features */
299 	read_feat_rme();
300 
301 	if (tainted) {
302 		panic();
303 	}
304 }
305