xref: /xnu-11215.61.5/iokit/IOKit/IOReportTypes.h (revision 4f1223e81cd707a65cc109d0b8ad6653699da3c4)
1*4f1223e8SApple OSS Distributions /*
2*4f1223e8SApple OSS Distributions  * Copyright (c) 2012-2014 Apple Computer, Inc.  All Rights Reserved.
3*4f1223e8SApple OSS Distributions  *
4*4f1223e8SApple OSS Distributions  * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5*4f1223e8SApple OSS Distributions  *
6*4f1223e8SApple OSS Distributions  * This file contains Original Code and/or Modifications of Original Code
7*4f1223e8SApple OSS Distributions  * as defined in and that are subject to the Apple Public Source License
8*4f1223e8SApple OSS Distributions  * Version 2.0 (the 'License'). You may not use this file except in
9*4f1223e8SApple OSS Distributions  * compliance with the License. The rights granted to you under the License
10*4f1223e8SApple OSS Distributions  * may not be used to create, or enable the creation or redistribution of,
11*4f1223e8SApple OSS Distributions  * unlawful or unlicensed copies of an Apple operating system, or to
12*4f1223e8SApple OSS Distributions  * circumvent, violate, or enable the circumvention or violation of, any
13*4f1223e8SApple OSS Distributions  * terms of an Apple operating system software license agreement.
14*4f1223e8SApple OSS Distributions  *
15*4f1223e8SApple OSS Distributions  * Please obtain a copy of the License at
16*4f1223e8SApple OSS Distributions  * http://www.opensource.apple.com/apsl/ and read it before using this file.
17*4f1223e8SApple OSS Distributions  *
18*4f1223e8SApple OSS Distributions  * The Original Code and all software distributed under the License are
19*4f1223e8SApple OSS Distributions  * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20*4f1223e8SApple OSS Distributions  * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21*4f1223e8SApple OSS Distributions  * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22*4f1223e8SApple OSS Distributions  * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23*4f1223e8SApple OSS Distributions  * Please see the License for the specific language governing rights and
24*4f1223e8SApple OSS Distributions  * limitations under the License.
25*4f1223e8SApple OSS Distributions  *
26*4f1223e8SApple OSS Distributions  * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27*4f1223e8SApple OSS Distributions  */
28*4f1223e8SApple OSS Distributions 
29*4f1223e8SApple OSS Distributions #ifndef _IOREPORT_TYPES_H_
30*4f1223e8SApple OSS Distributions #define _IOREPORT_TYPES_H_
31*4f1223e8SApple OSS Distributions 
32*4f1223e8SApple OSS Distributions #include <stdint.h>
33*4f1223e8SApple OSS Distributions 
34*4f1223e8SApple OSS Distributions #ifdef __cplusplus
35*4f1223e8SApple OSS Distributions extern "C" {
36*4f1223e8SApple OSS Distributions #endif
37*4f1223e8SApple OSS Distributions 
38*4f1223e8SApple OSS Distributions #define IOR_VALUES_PER_ELEMENT  4
39*4f1223e8SApple OSS Distributions 
40*4f1223e8SApple OSS Distributions /*! @const      kIOReportInvalidValue
41*4f1223e8SApple OSS Distributions  *   @const      kIOReportInvalidIntValue
42*4f1223e8SApple OSS Distributions  *   @abstract   cardinal value used to indicate data errors
43*4f1223e8SApple OSS Distributions  *
44*4f1223e8SApple OSS Distributions  *   @discussion
45*4f1223e8SApple OSS Distributions  *       kIOReportInvalidValue and kIOReportInvalidIntValue have the
46*4f1223e8SApple OSS Distributions  *       same bit pattern so that clients checking for one or the other
47*4f1223e8SApple OSS Distributions  *       don't have to worry about getting the signedness right.
48*4f1223e8SApple OSS Distributions  */
49*4f1223e8SApple OSS Distributions #define kIOReportInvalidIntValue INT64_MIN
50*4f1223e8SApple OSS Distributions #define kIOReportInvalidValue (uint64_t)kIOReportInvalidIntValue
51*4f1223e8SApple OSS Distributions 
52*4f1223e8SApple OSS Distributions /*! @typedef    IOReportCategories
53*4f1223e8SApple OSS Distributions  *   @abstract   encapsulate important, multi-purpose "tags" for channels
54*4f1223e8SApple OSS Distributions  *
55*4f1223e8SApple OSS Distributions  *   @discussion
56*4f1223e8SApple OSS Distributions  *       IOReportCategories is the type for the .categories field of
57*4f1223e8SApple OSS Distributions  *       IOReportChanelType.  These categories are inteded to empower a
58*4f1223e8SApple OSS Distributions  *       limited number of clients to retrieve a broad range of channels
59*4f1223e8SApple OSS Distributions  *       without knowing much about them.  They can be OR'd together as
60*4f1223e8SApple OSS Distributions  *       needed.  Groups and subgroups are a more extensible mechanism
61*4f1223e8SApple OSS Distributions  *       for aggregating channels produced by different drivers.
62*4f1223e8SApple OSS Distributions  */
63*4f1223e8SApple OSS Distributions typedef uint16_t IOReportCategories;
64*4f1223e8SApple OSS Distributions #define kIOReportCategoryPower           (1 << 1)       // and energy
65*4f1223e8SApple OSS Distributions #define kIOReportCategoryTraffic         (1 << 2)       // I/O at any level
66*4f1223e8SApple OSS Distributions #define kIOReportCategoryPerformance     (1 << 3)       // e.g. cycles/byte
67*4f1223e8SApple OSS Distributions #define kIOReportCategoryPeripheral      (1 << 4)       // not built-in
68*4f1223e8SApple OSS Distributions 
69*4f1223e8SApple OSS Distributions #define kIOReportCategoryField           (1 << 8)       // consider logging
70*4f1223e8SApple OSS Distributions 
71*4f1223e8SApple OSS Distributions // future categories TBD
72*4f1223e8SApple OSS Distributions #define kIOReportCategoryDebug           (1 << 15)
73*4f1223e8SApple OSS Distributions #define kIOReportInvalidCategory         UINT16_MAX
74*4f1223e8SApple OSS Distributions 
75*4f1223e8SApple OSS Distributions 
76*4f1223e8SApple OSS Distributions // IOReportChannelType.report_format
77*4f1223e8SApple OSS Distributions typedef uint8_t IOReportFormat;
78*4f1223e8SApple OSS Distributions enum {
79*4f1223e8SApple OSS Distributions 	kIOReportInvalidFormat = 0,
80*4f1223e8SApple OSS Distributions 	kIOReportFormatSimple = 1,
81*4f1223e8SApple OSS Distributions 	kIOReportFormatState = 2,
82*4f1223e8SApple OSS Distributions 	kIOReportFormatHistogram = 3,
83*4f1223e8SApple OSS Distributions 	kIOReportFormatSimpleArray = 4
84*4f1223e8SApple OSS Distributions };
85*4f1223e8SApple OSS Distributions 
86*4f1223e8SApple OSS Distributions // simple report values
87*4f1223e8SApple OSS Distributions typedef struct {
88*4f1223e8SApple OSS Distributions 	int64_t    simple_value;
89*4f1223e8SApple OSS Distributions 	uint64_t    reserved1;
90*4f1223e8SApple OSS Distributions 	uint64_t    reserved2;
91*4f1223e8SApple OSS Distributions 	uint64_t    reserved3;
92*4f1223e8SApple OSS Distributions } __attribute((packed)) IOSimpleReportValues;
93*4f1223e8SApple OSS Distributions 
94*4f1223e8SApple OSS Distributions // simple value array
95*4f1223e8SApple OSS Distributions typedef struct {
96*4f1223e8SApple OSS Distributions 	int64_t    simple_values[IOR_VALUES_PER_ELEMENT];
97*4f1223e8SApple OSS Distributions } __attribute((packed)) IOSimpleArrayReportValues;
98*4f1223e8SApple OSS Distributions 
99*4f1223e8SApple OSS Distributions // state report values
100*4f1223e8SApple OSS Distributions typedef struct {
101*4f1223e8SApple OSS Distributions 	uint64_t    state_id;       // 0..N-1 or 8-char code (see MAKEID())
102*4f1223e8SApple OSS Distributions 	uint64_t    intransitions;  // number of transitions into this state
103*4f1223e8SApple OSS Distributions 	uint64_t    upticks;        // ticks spent in state (local timebase)
104*4f1223e8SApple OSS Distributions 	uint64_t    last_intransition;// ticks at last in-transition
105*4f1223e8SApple OSS Distributions } __attribute((packed)) IOStateReportValues;
106*4f1223e8SApple OSS Distributions 
107*4f1223e8SApple OSS Distributions // histogram report values
108*4f1223e8SApple OSS Distributions typedef struct {
109*4f1223e8SApple OSS Distributions 	uint64_t    bucket_hits;
110*4f1223e8SApple OSS Distributions 	int64_t     bucket_min;
111*4f1223e8SApple OSS Distributions 	int64_t     bucket_max;
112*4f1223e8SApple OSS Distributions 	int64_t     bucket_sum;
113*4f1223e8SApple OSS Distributions } __attribute((packed)) IOHistogramReportValues;
114*4f1223e8SApple OSS Distributions 
115*4f1223e8SApple OSS Distributions 
116*4f1223e8SApple OSS Distributions 
117*4f1223e8SApple OSS Distributions // configuration actions generally change future behavior
118*4f1223e8SApple OSS Distributions typedef uint32_t IOReportConfigureAction;
119*4f1223e8SApple OSS Distributions enum {
120*4f1223e8SApple OSS Distributions 	// basics (in common operational order)
121*4f1223e8SApple OSS Distributions 	kIOReportEnable             = 0x01,
122*4f1223e8SApple OSS Distributions 	kIOReportGetDimensions      = 0x02,
123*4f1223e8SApple OSS Distributions 	kIOReportDisable            = 0x00,
124*4f1223e8SApple OSS Distributions 
125*4f1223e8SApple OSS Distributions 	// Enable/disable modifiers
126*4f1223e8SApple OSS Distributions 	kIOReportNotifyHubOnChange  = 0x10, // triggered polling
127*4f1223e8SApple OSS Distributions 
128*4f1223e8SApple OSS Distributions 	kIOReportTraceOnChange      = 0x20  // kdebug.h tracing
129*4f1223e8SApple OSS Distributions };
130*4f1223e8SApple OSS Distributions 
131*4f1223e8SApple OSS Distributions // update actions should not have observable side effects
132*4f1223e8SApple OSS Distributions typedef uint32_t IOReportUpdateAction;
133*4f1223e8SApple OSS Distributions enum {
134*4f1223e8SApple OSS Distributions 	kIOReportCopyChannelData    = 1,
135*4f1223e8SApple OSS Distributions 	kIOReportTraceChannelData   = 2
136*4f1223e8SApple OSS Distributions };
137*4f1223e8SApple OSS Distributions 
138*4f1223e8SApple OSS Distributions typedef struct {
139*4f1223e8SApple OSS Distributions 	uint8_t     report_format;  // Histogram, StateResidency, etc.
140*4f1223e8SApple OSS Distributions 	uint8_t     reserved;       // must be zero
141*4f1223e8SApple OSS Distributions 	uint16_t    categories;     // power, traffic, etc (omnibus obs.)
142*4f1223e8SApple OSS Distributions 	uint16_t    nelements;      // internal size of channel
143*4f1223e8SApple OSS Distributions 
144*4f1223e8SApple OSS Distributions 	// only meaningful in the data pipeline
145*4f1223e8SApple OSS Distributions 	int16_t     element_idx;    // 0..nelements-1
146*4f1223e8SApple OSS Distributions 	                            // -1..-(nelements) = invalid (13127884)
147*4f1223e8SApple OSS Distributions } __attribute((packed)) IOReportChannelType;
148*4f1223e8SApple OSS Distributions 
149*4f1223e8SApple OSS Distributions /*!
150*4f1223e8SApple OSS Distributions  *   @define     IOREPORT_MAKECHID
151*4f1223e8SApple OSS Distributions  *   @abstract   convert up to 8 printable characters into a 64-bit channel ID
152*4f1223e8SApple OSS Distributions  *   @param  <char0..char7> - printable chars to be packed into a channel ID
153*4f1223e8SApple OSS Distributions  *   @result     a 64-bit channel ID with an implicit ASCII name
154*4f1223e8SApple OSS Distributions  *   @discussion A simple example:
155*4f1223e8SApple OSS Distributions  *               IOREPORT_MAKECHID('H', 'i', ' ', 'w', 'o', 'r', 'l', 'd');
156*4f1223e8SApple OSS Distributions  *               will evaluate to 0x686920776f726c64.  Any NUL bytes are
157*4f1223e8SApple OSS Distributions  *               ignored (by libIOReport) for naming purposes, but will
158*4f1223e8SApple OSS Distributions  *               appear in the channel ID.  Using a non-NUL non-printable
159*4f1223e8SApple OSS Distributions  *               character will disable the implicit name.  Putting NUL
160*4f1223e8SApple OSS Distributions  *               bytes first eliminates trailing zeros when the channel
161*4f1223e8SApple OSS Distributions  *               ID is printed as hex.  For example:
162*4f1223e8SApple OSS Distributions  *               IORERPORT_MAKECHID('\0','\0','n','x','f','e','r','s');
163*4f1223e8SApple OSS Distributions  *               To see the text, use xxd -r -p # not -rp; see 12976241
164*4f1223e8SApple OSS Distributions  */
165*4f1223e8SApple OSS Distributions #define __IOR_lshiftchr(c, chshift)     ((uint64_t)(c) << (8*(chshift)))
166*4f1223e8SApple OSS Distributions #define IOREPORT_MAKEID(A, B, C, D, E, F, G, H) \
167*4f1223e8SApple OSS Distributions     (__IOR_lshiftchr(A, 7) | __IOR_lshiftchr(B, 6) | __IOR_lshiftchr(C, 5) \
168*4f1223e8SApple OSS Distributions     | __IOR_lshiftchr(D, 4) | __IOR_lshiftchr(E, 3) | __IOR_lshiftchr(F, 2) \
169*4f1223e8SApple OSS Distributions     | __IOR_lshiftchr(G, 1) | __IOR_lshiftchr(H, 0))
170*4f1223e8SApple OSS Distributions 
171*4f1223e8SApple OSS Distributions typedef struct {
172*4f1223e8SApple OSS Distributions 	uint64_t                channel_id;
173*4f1223e8SApple OSS Distributions 	IOReportChannelType     channel_type;
174*4f1223e8SApple OSS Distributions } IOReportChannel;
175*4f1223e8SApple OSS Distributions 
176*4f1223e8SApple OSS Distributions typedef struct {
177*4f1223e8SApple OSS Distributions 	uint32_t                nchannels;
178*4f1223e8SApple OSS Distributions 	IOReportChannel         channels[];
179*4f1223e8SApple OSS Distributions } IOReportChannelList;
180*4f1223e8SApple OSS Distributions 
181*4f1223e8SApple OSS Distributions typedef struct {
182*4f1223e8SApple OSS Distributions 	uint64_t                provider_id;
183*4f1223e8SApple OSS Distributions 	IOReportChannel         channel;
184*4f1223e8SApple OSS Distributions } IOReportInterest;
185*4f1223e8SApple OSS Distributions 
186*4f1223e8SApple OSS Distributions typedef struct {
187*4f1223e8SApple OSS Distributions 	uint32_t                ninterests;
188*4f1223e8SApple OSS Distributions 	IOReportInterest        interests[];
189*4f1223e8SApple OSS Distributions } IOReportInterestList;
190*4f1223e8SApple OSS Distributions 
191*4f1223e8SApple OSS Distributions typedef struct {
192*4f1223e8SApple OSS Distributions 	uint64_t                v[IOR_VALUES_PER_ELEMENT];
193*4f1223e8SApple OSS Distributions } __attribute((packed)) IOReportElementValues;
194*4f1223e8SApple OSS Distributions 
195*4f1223e8SApple OSS Distributions typedef struct {
196*4f1223e8SApple OSS Distributions 	uint64_t                provider_id;
197*4f1223e8SApple OSS Distributions 	uint64_t                channel_id;
198*4f1223e8SApple OSS Distributions 	IOReportChannelType     channel_type;
199*4f1223e8SApple OSS Distributions 	uint64_t                timestamp;// mach_absolute_time()
200*4f1223e8SApple OSS Distributions 	IOReportElementValues   values;
201*4f1223e8SApple OSS Distributions } __attribute((packed)) IOReportElement;
202*4f1223e8SApple OSS Distributions 
203*4f1223e8SApple OSS Distributions 
204*4f1223e8SApple OSS Distributions 
205*4f1223e8SApple OSS Distributions /*
206*4f1223e8SApple OSS Distributions  *  IOReporting unit type and constants
207*4f1223e8SApple OSS Distributions  */
208*4f1223e8SApple OSS Distributions 
209*4f1223e8SApple OSS Distributions // 1. Mechanism
210*4f1223e8SApple OSS Distributions 
211*4f1223e8SApple OSS Distributions // Assume encoded units could be stored in binary format: don't
212*4f1223e8SApple OSS Distributions // change existing values.
213*4f1223e8SApple OSS Distributions 
214*4f1223e8SApple OSS Distributions typedef uint64_t IOReportUnit;
215*4f1223e8SApple OSS Distributions typedef uint64_t IOReportUnits;     // deprecated typo, please switch
216*4f1223e8SApple OSS Distributions #define __IOR_MAKEUNIT(quantity, scale) \
217*4f1223e8SApple OSS Distributions 	(((IOReportUnit)quantity << 56) | (uint64_t)scale)
218*4f1223e8SApple OSS Distributions #define IOREPORT_GETUNIT_QUANTITY(unit) \
219*4f1223e8SApple OSS Distributions 	((IOReportQuantity)((uint64_t)unit >> 56) & 0xff)
220*4f1223e8SApple OSS Distributions #define IOREPORT_GETUNIT_SCALE(unit) \
221*4f1223e8SApple OSS Distributions 	((IOReportScaleFactor)unit & 0x00ffffffffffffff)
222*4f1223e8SApple OSS Distributions 
223*4f1223e8SApple OSS Distributions // 8b quantity ID | 32b const val + 8b*2^10 + 8b*2^n | 8b cardinal | 8b unused
224*4f1223e8SApple OSS Distributions typedef uint8_t IOReportQuantity;       // SI "quantity" is what's measured
225*4f1223e8SApple OSS Distributions typedef uint64_t IOReportScaleFactor;
226*4f1223e8SApple OSS Distributions 
227*4f1223e8SApple OSS Distributions // See <http://en.wikipedia.org/wiki/SI_base_unit> for a list
228*4f1223e8SApple OSS Distributions // of quantities and their symbols.
229*4f1223e8SApple OSS Distributions enum {
230*4f1223e8SApple OSS Distributions 	// used by state reports, etc
231*4f1223e8SApple OSS Distributions 	kIOReportQuantityUndefined = 0,
232*4f1223e8SApple OSS Distributions 
233*4f1223e8SApple OSS Distributions 	kIOReportQuantityTime           = 1,// Seconds
234*4f1223e8SApple OSS Distributions 	kIOReportQuantityPower          = 2,// Watts
235*4f1223e8SApple OSS Distributions 	kIOReportQuantityEnergy         = 3,// Joules
236*4f1223e8SApple OSS Distributions 	kIOReportQuantityCurrent        = 4,// Amperes
237*4f1223e8SApple OSS Distributions 	kIOReportQuantityVoltage        = 5,// Volts
238*4f1223e8SApple OSS Distributions 	kIOReportQuantityCapacitance    = 6,// Farad
239*4f1223e8SApple OSS Distributions 	kIOReportQuantityInductance     = 7,// Henry
240*4f1223e8SApple OSS Distributions 	kIOReportQuantityFrequency      = 8,// Hertz
241*4f1223e8SApple OSS Distributions 	kIOReportQuantityData           = 9,// bits/bytes (see scale)
242*4f1223e8SApple OSS Distributions 	kIOReportQuantityTemperature    = 10,// Celsius (not Kelvin :)
243*4f1223e8SApple OSS Distributions 
244*4f1223e8SApple OSS Distributions 	kIOReportQuantityEventCount     = 100,
245*4f1223e8SApple OSS Distributions 	kIOReportQuantityPacketCount    = 101,
246*4f1223e8SApple OSS Distributions 	kIOReportQuantityCPUInstrs      = 102
247*4f1223e8SApple OSS Distributions };
248*4f1223e8SApple OSS Distributions 
249*4f1223e8SApple OSS Distributions 
250*4f1223e8SApple OSS Distributions /* A number of units end up with both IEC (2^n) and SI (10^n) scale factors.
251*4f1223e8SApple OSS Distributions  *  For example, the "MB" of a 1.44 MB floppy or a 1024MHz clock.  We
252*4f1223e8SApple OSS Distributions  *  thus support separate 2^n and 10^n factors.  The exponent encoding
253*4f1223e8SApple OSS Distributions  *  scheme is modeled loosely on single-precision IEEE 754.
254*4f1223e8SApple OSS Distributions  */
255*4f1223e8SApple OSS Distributions #define kIOReportScaleConstMask 0x000000007fffffff      // constant ("uint31")
256*4f1223e8SApple OSS Distributions #define kIOReportScaleOneOver   (1LL << 31)             // 1/constant
257*4f1223e8SApple OSS Distributions #define kIOReportExpBase        (-127)                  // support base^(-n)
258*4f1223e8SApple OSS Distributions #define kIOReportExpZeroOffset  -(kIOReportExpBase)     // max exponent = 128
259*4f1223e8SApple OSS Distributions #define kIOReportScaleSIShift   32                      // * 10^n
260*4f1223e8SApple OSS Distributions #define kIOReportScaleSIMask    0x000000ff00000000
261*4f1223e8SApple OSS Distributions #define kIOReportScaleIECShift  40                      // * 2^n
262*4f1223e8SApple OSS Distributions #define kIOReportScaleIECMask   0x0000ff0000000000
263*4f1223e8SApple OSS Distributions #define kIOReportCardinalShift  48                      // placeholders
264*4f1223e8SApple OSS Distributions #define kIOReportCardinalMask   0x00ff000000000000
265*4f1223e8SApple OSS Distributions 
266*4f1223e8SApple OSS Distributions 
267*4f1223e8SApple OSS Distributions /*
268*4f1223e8SApple OSS Distributions  *  Scales are described as a factor times unity:
269*4f1223e8SApple OSS Distributions  *  1ms = kIOReportScaleMilli * s
270*4f1223e8SApple OSS Distributions  *
271*4f1223e8SApple OSS Distributions  *  A value expressed in a scaled unit can be scaled to unity via
272*4f1223e8SApple OSS Distributions  *  multiplication by the constant:
273*4f1223e8SApple OSS Distributions  *  100ms * kIOReportScaleMilli [1e-3] = 0.1s.
274*4f1223e8SApple OSS Distributions  */
275*4f1223e8SApple OSS Distributions 
276*4f1223e8SApple OSS Distributions // SI / decimal
277*4f1223e8SApple OSS Distributions #define kIOReportScalePico  ((-12LL + kIOReportExpZeroOffset)  \
278*4f1223e8SApple OSS Distributions 	                                << kIOReportScaleSIShift)
279*4f1223e8SApple OSS Distributions #define kIOReportScaleNano  ((-9LL + kIOReportExpZeroOffset)  \
280*4f1223e8SApple OSS Distributions 	                                << kIOReportScaleSIShift)
281*4f1223e8SApple OSS Distributions #define kIOReportScaleMicro ((-6LL + kIOReportExpZeroOffset)  \
282*4f1223e8SApple OSS Distributions 	                                << kIOReportScaleSIShift)
283*4f1223e8SApple OSS Distributions #define kIOReportScaleMilli ((-3LL + kIOReportExpZeroOffset)  \
284*4f1223e8SApple OSS Distributions 	                                << kIOReportScaleSIShift)
285*4f1223e8SApple OSS Distributions #define kIOReportScaleUnity 0    // 10^0 = 2^0 = 1
286*4f1223e8SApple OSS Distributions // unity = 0 is a special case for which we give up exp = -127
287*4f1223e8SApple OSS Distributions #define kIOReportScaleKilo  ((3LL + kIOReportExpZeroOffset)  \
288*4f1223e8SApple OSS Distributions 	                                << kIOReportScaleSIShift)
289*4f1223e8SApple OSS Distributions #define kIOReportScaleMega  ((6LL + kIOReportExpZeroOffset)  \
290*4f1223e8SApple OSS Distributions 	                                << kIOReportScaleSIShift)
291*4f1223e8SApple OSS Distributions #define kIOReportScaleGiga  ((9LL + kIOReportExpZeroOffset)  \
292*4f1223e8SApple OSS Distributions 	                                << kIOReportScaleSIShift)
293*4f1223e8SApple OSS Distributions #define kIOReportScaleTera  ((12LL + kIOReportExpZeroOffset)  \
294*4f1223e8SApple OSS Distributions 	                                << kIOReportScaleSIShift)
295*4f1223e8SApple OSS Distributions 
296*4f1223e8SApple OSS Distributions // IEC / computer / binary
297*4f1223e8SApple OSS Distributions // It's not clear we'll ever use 2^(-n), but 1..2^~120 should suffice.
298*4f1223e8SApple OSS Distributions #define kIOReportScaleBits  kIOReportScaleUnity
299*4f1223e8SApple OSS Distributions #define kIOReportScaleBytes     ((3LL + kIOReportExpZeroOffset)  \
300*4f1223e8SApple OSS Distributions 	                                    << kIOReportScaleIECShift)
301*4f1223e8SApple OSS Distributions // (bytes have to be added to the exponents up front, can't just OR in)
302*4f1223e8SApple OSS Distributions #define kIOReportScaleKibi      ((10LL + kIOReportExpZeroOffset)  \
303*4f1223e8SApple OSS Distributions 	                                    << kIOReportScaleIECShift)
304*4f1223e8SApple OSS Distributions #define kIOReportScaleKiBytes   ((13LL + kIOReportExpZeroOffset)  \
305*4f1223e8SApple OSS Distributions 	                                    << kIOReportScaleIECShift)
306*4f1223e8SApple OSS Distributions #define kIOReportScaleMebi      ((20LL + kIOReportExpZeroOffset)  \
307*4f1223e8SApple OSS Distributions 	                                    << kIOReportScaleIECShift)
308*4f1223e8SApple OSS Distributions #define kIOReportScaleMiBytes   ((23LL + kIOReportExpZeroOffset)  \
309*4f1223e8SApple OSS Distributions 	                                    << kIOReportScaleIECShift)
310*4f1223e8SApple OSS Distributions #define kIOReportScaleGibi      ((30LL + kIOReportExpZeroOffset)  \
311*4f1223e8SApple OSS Distributions 	                                    << kIOReportScaleIECShift)
312*4f1223e8SApple OSS Distributions #define kIOReportScaleGiBytes   ((33LL + kIOReportExpZeroOffset)  \
313*4f1223e8SApple OSS Distributions 	                                    << kIOReportScaleIECShift)
314*4f1223e8SApple OSS Distributions #define kIOReportScaleTebi      ((40LL + kIOReportExpZeroOffset)  \
315*4f1223e8SApple OSS Distributions 	                                    << kIOReportScaleIECShift)
316*4f1223e8SApple OSS Distributions #define kIOReportScaleTiBytes   ((43LL + kIOReportExpZeroOffset)  \
317*4f1223e8SApple OSS Distributions 	                                    << kIOReportScaleIECShift)
318*4f1223e8SApple OSS Distributions // can't encode more than 2^125 (keeping bits & bytes inside -126..128)
319*4f1223e8SApple OSS Distributions // Also, IOReportScaleValue() is currently limited internally by uint64_t.
320*4f1223e8SApple OSS Distributions 
321*4f1223e8SApple OSS Distributions 
322*4f1223e8SApple OSS Distributions // Cardinal values, to be filled in appropriately.
323*4f1223e8SApple OSS Distributions // Add values in increasing order.
324*4f1223e8SApple OSS Distributions #define kIOReportScaleMachHWTicks   (1LL << kIOReportCardinalShift)
325*4f1223e8SApple OSS Distributions #define kIOReportScaleHWPageSize    (2LL << kIOReportCardinalShift)
326*4f1223e8SApple OSS Distributions 
327*4f1223e8SApple OSS Distributions // page scales: 2 pages * 4ikB/page = 8096 bytes
328*4f1223e8SApple OSS Distributions #define kIOReportScale4KiB      (4 | kIOReportScaleKiBytes)
329*4f1223e8SApple OSS Distributions #define kIOReportScale8KiB      (8 | kIOReportScaleKiBytes)
330*4f1223e8SApple OSS Distributions #define kIOReportScale16KiB     (16 | kIOReportScaleKiBytes)
331*4f1223e8SApple OSS Distributions 
332*4f1223e8SApple OSS Distributions // Clock frequency scales (units add seconds).
333*4f1223e8SApple OSS Distributions // 1 GHz ticks are 1 ns: 1000 ticks * 1e-6 = 1e-3s
334*4f1223e8SApple OSS Distributions // This '1' is a no-op for scaling, but allows a custom label.
335*4f1223e8SApple OSS Distributions #define kIOReportScale1GHz      (1 | kIOReportScaleNano)
336*4f1223e8SApple OSS Distributions // 24MHz ticks are 1/24 of a microsecond: (1/24 * kIOReportScaleMicro [1e-6])s
337*4f1223e8SApple OSS Distributions // So for example, 240 24Mticks * 1/24 * 1e-6 = .00001s [1e-5]s
338*4f1223e8SApple OSS Distributions #define kIOReportScale24MHz     (kIOReportScaleOneOver|24 |kIOReportScaleMicro)
339*4f1223e8SApple OSS Distributions 
340*4f1223e8SApple OSS Distributions // --- END: units mechanism
341*4f1223e8SApple OSS Distributions 
342*4f1223e8SApple OSS Distributions 
343*4f1223e8SApple OSS Distributions // 2. Unit constants
344*4f1223e8SApple OSS Distributions #define kIOReportUnitNone       __IOR_MAKEUNIT(kIOReportQuantityUndefined,  \
345*4f1223e8SApple OSS Distributions 	                                          kIOReportScaleUnity)
346*4f1223e8SApple OSS Distributions 
347*4f1223e8SApple OSS Distributions #define kIOReportUnit_s         __IOR_MAKEUNIT(kIOReportQuantityTime,  \
348*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleUnity)
349*4f1223e8SApple OSS Distributions #define kIOReportUnit_ms        __IOR_MAKEUNIT(kIOReportQuantityTime,  \
350*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleMilli)
351*4f1223e8SApple OSS Distributions #define kIOReportUnit_us        __IOR_MAKEUNIT(kIOReportQuantityTime,  \
352*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleMicro)
353*4f1223e8SApple OSS Distributions #define kIOReportUnit_ns        __IOR_MAKEUNIT(kIOReportQuantityTime,  \
354*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleNano)
355*4f1223e8SApple OSS Distributions 
356*4f1223e8SApple OSS Distributions #define kIOReportUnit_J         __IOR_MAKEUNIT(kIOReportQuantityEnergy,  \
357*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleUnity)
358*4f1223e8SApple OSS Distributions #define kIOReportUnit_mJ        __IOR_MAKEUNIT(kIOReportQuantityEnergy,  \
359*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleMilli)
360*4f1223e8SApple OSS Distributions #define kIOReportUnit_uJ        __IOR_MAKEUNIT(kIOReportQuantityEnergy,  \
361*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleMicro)
362*4f1223e8SApple OSS Distributions #define kIOReportUnit_nJ        __IOR_MAKEUNIT(kIOReportQuantityEnergy,  \
363*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleNano)
364*4f1223e8SApple OSS Distributions #define kIOReportUnit_pJ        __IOR_MAKEUNIT(kIOReportQuantityEnergy,  \
365*4f1223e8SApple OSS Distributions 	                                       kIOReportScalePico)
366*4f1223e8SApple OSS Distributions 
367*4f1223e8SApple OSS Distributions #define kIOReportUnitHWTicks    __IOR_MAKEUNIT(kIOReportQuantityTime,  \
368*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleMachHWTicks)
369*4f1223e8SApple OSS Distributions #define kIOReportUnit24MHzTicks __IOR_MAKEUNIT(kIOReportQuantityTime,  \
370*4f1223e8SApple OSS Distributions 	                                       kIOReportScale24MHz)
371*4f1223e8SApple OSS Distributions #define kIOReportUnit1GHzTicks  __IOR_MAKEUNIT(kIOReportQuantityTime,  \
372*4f1223e8SApple OSS Distributions 	                                       kIOReportScale1GHz)
373*4f1223e8SApple OSS Distributions 
374*4f1223e8SApple OSS Distributions #define kIOReportUnitBits       __IOR_MAKEUNIT(kIOReportQuantityData,  \
375*4f1223e8SApple OSS Distributions 	                                        kIOReportScaleBits)
376*4f1223e8SApple OSS Distributions #define kIOReportUnitBytes      __IOR_MAKEUNIT(kIOReportQuantityData,  \
377*4f1223e8SApple OSS Distributions 	                                        kIOReportScaleBytes)
378*4f1223e8SApple OSS Distributions #define kIOReportUnit_KiB       __IOR_MAKEUNIT(kIOReportQuantityData,  \
379*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleKiBytes)
380*4f1223e8SApple OSS Distributions #define kIOReportUnit_MiB       __IOR_MAKEUNIT(kIOReportQuantityData,  \
381*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleMiBytes)
382*4f1223e8SApple OSS Distributions #define kIOReportUnit_GiB       __IOR_MAKEUNIT(kIOReportQuantityData,  \
383*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleGiBytes)
384*4f1223e8SApple OSS Distributions #define kIOReportUnit_TiB       __IOR_MAKEUNIT(kIOReportQuantityData,  \
385*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleTiBytes)
386*4f1223e8SApple OSS Distributions 
387*4f1223e8SApple OSS Distributions #define kIOReportUnitEvents     __IOR_MAKEUNIT(kIOReportQuantityEventCount,  \
388*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleUnity)
389*4f1223e8SApple OSS Distributions 
390*4f1223e8SApple OSS Distributions #define kIOReportUnitPackets    __IOR_MAKEUNIT(kIOReportQuantityPacketCount,  \
391*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleUnity)
392*4f1223e8SApple OSS Distributions 
393*4f1223e8SApple OSS Distributions #define kIOReportUnitInstrs     __IOR_MAKEUNIT(kIOReportQuantityCPUInstrs,  \
394*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleUnity)
395*4f1223e8SApple OSS Distributions #define kIOReportUnit_KI        __IOR_MAKEUNIT(kIOReportQuantityCPUInstrs,  \
396*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleKilo)
397*4f1223e8SApple OSS Distributions #define kIOReportUnit_MI        __IOR_MAKEUNIT(kIOReportQuantityCPUInstrs,  \
398*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleMega)
399*4f1223e8SApple OSS Distributions #define kIOReportUnit_GI        __IOR_MAKEUNIT(kIOReportQuantityCPUInstrs,  \
400*4f1223e8SApple OSS Distributions 	                                       kIOReportScaleGiga)
401*4f1223e8SApple OSS Distributions 
402*4f1223e8SApple OSS Distributions // Please file bugs (xnu | IOReporting) for additional units.
403*4f1223e8SApple OSS Distributions 
404*4f1223e8SApple OSS Distributions // --- END: unit constants
405*4f1223e8SApple OSS Distributions 
406*4f1223e8SApple OSS Distributions 
407*4f1223e8SApple OSS Distributions #ifdef __cplusplus
408*4f1223e8SApple OSS Distributions }
409*4f1223e8SApple OSS Distributions #endif
410*4f1223e8SApple OSS Distributions 
411*4f1223e8SApple OSS Distributions #endif // _IOREPORT_TYPES_H_
412