feature. See also
. The project being documented here (as the example) is the Zig library itself.
File
Code
const std = @import("../std.zig");
const testing = std.testing;
const valgrind = std.valgrind;
pub const ClientRequest = enum(usize) {
MakeMemNoAccess = valgrind.ToolBase("MC".*),
MakeMemUndefined,
MakeMemDefined,
Discard,
CheckMemIsAddressable,
CheckMemIsDefined,
DoLeakCheck,
CountLeaks,
GetVbits,
SetVbits,
CreateBlock,
MakeMemDefinedIfAddressable,
CountLeakBlocks,
EnableAddrErrorReportingInRange,
DisableAddrErrorReportingInRange,
};
fn doClientRequestExpr(default: usize, request: ClientRequest, a1: usize, a2: usize, a3: usize, a4: usize, a5: usize) usize {
return valgrind.doClientRequest(default, @as(usize, @intCast(@backingInt(request))), a1, a2, a3, a4, a5);
}
fn doClientRequestStmt(request: ClientRequest, a1: usize, a2: usize, a3: usize, a4: usize, a5: usize) void {
_ = doClientRequestExpr(0, request, a1, a2, a3, a4, a5);
}
pub fn makeMemNoAccess(qzz: []const u8) void {
_ = doClientRequestExpr(0,
.MakeMemNoAccess, @intFromPtr(qzz.ptr), qzz.len, 0, 0, 0);
}
pub fn makeMemUndefined(qzz: []const u8) void {
_ = doClientRequestExpr(0,
.MakeMemUndefined, @intFromPtr(qzz.ptr), qzz.len, 0, 0, 0);
}
pub fn makeMemDefined(qzz: []const u8) void {
_ = doClientRequestExpr(0,
.MakeMemDefined, @intFromPtr(qzz.ptr), qzz.len, 0, 0, 0);
}
pub fn makeMemDefinedIfAddressable(qzz: []const u8) void {
_ = doClientRequestExpr(0,
.MakeMemDefinedIfAddressable, @intFromPtr(qzz.ptr), qzz.len, 0, 0, 0);
}
pub fn createBlock(qzz: []const u8, desc: [*:0]const u8) usize {
return doClientRequestExpr(0,
.CreateBlock, @intFromPtr(qzz.ptr), qzz.len, @intFromPtr(desc), 0, 0);
}
pub fn discard(blkindex: usize) bool {
return doClientRequestExpr(0,
.Discard, 0, blkindex, 0, 0, 0) != 0;
}
pub fn checkMemIsAddressable(qzz: []const u8) usize {
return doClientRequestExpr(0, .CheckMemIsAddressable, @intFromPtr(qzz.ptr), qzz.len, 0, 0, 0);
}
pub fn checkMemIsDefined(qzz: []const u8) usize {
return doClientRequestExpr(0, .CheckMemIsDefined, @intFromPtr(qzz.ptr), qzz.len, 0, 0, 0);
}
pub fn doLeakCheck() void {
doClientRequestStmt(.DoLeakCheck, 0, 0, 0, 0, 0);
}
pub fn doAddedLeakCheck() void {
doClientRequestStmt(.DoLeakCheck, 0, 1, 0, 0, 0);
}
pub fn doChangedLeakCheck() void {
doClientRequestStmt(.DoLeakCheck, 0, 2, 0, 0, 0);
}
pub fn doQuickLeakCheck() void {
doClientRequestStmt(.DoLeakCheck, 1, 0, 0, 0, 0);
}
const CountResult = struct {
leaked: usize,
dubious: usize,
reachable: usize,
suppressed: usize,
};
pub fn countLeaks() CountResult {
var res: CountResult = .{
.leaked = 0,
.dubious = 0,
.reachable = 0,
.suppressed = 0,
};
doClientRequestStmt(
.CountLeaks,
@intFromPtr(&res.leaked),
@intFromPtr(&res.dubious),
@intFromPtr(&res.reachable),
@intFromPtr(&res.suppressed),
0,
);
return res;
}
test countLeaks {
try testing.expectEqual(
@as(CountResult, .{
.leaked = 0,
.dubious = 0,
.reachable = 0,
.suppressed = 0,
}),
countLeaks(),
);
}
pub fn countLeakBlocks() CountResult {
var res: CountResult = .{
.leaked = 0,
.dubious = 0,
.reachable = 0,
.suppressed = 0,
};
doClientRequestStmt(
.CountLeakBlocks,
@intFromPtr(&res.leaked),
@intFromPtr(&res.dubious),
@intFromPtr(&res.reachable),
@intFromPtr(&res.suppressed),
0,
);
return res;
}
test countLeakBlocks {
try testing.expectEqual(
@as(CountResult, .{
.leaked = 0,
.dubious = 0,
.reachable = 0,
.suppressed = 0,
}),
countLeakBlocks(),
);
}
pub fn getVbits(zza: []u8, zzvbits: []u8) u2 {
std.debug.assert(zzvbits.len >= zza.len / 8);
return @as(u2, @intCast(doClientRequestExpr(0, .GetVbits, @intFromPtr(zza.ptr), @intFromPtr(zzvbits.ptr), zza.len, 0, 0)));
}
pub fn setVbits(zzvbits: []u8, zza: []u8) u2 {
std.debug.assert(zzvbits.len >= zza.len / 8);
return @as(u2, @intCast(doClientRequestExpr(0, .SetVbits, @intFromPtr(zza.ptr), @intFromPtr(zzvbits.ptr), zza.len, 0, 0)));
}
pub fn disableAddrErrorReportingInRange(qzz: []u8) usize {
return doClientRequestExpr(0,
.DisableAddrErrorReportingInRange, @intFromPtr(qzz.ptr), qzz.len, 0, 0, 0);
}
pub fn enableAddrErrorReportingInRange(qzz: []u8) usize {
return doClientRequestExpr(0,
.EnableAddrErrorReportingInRange, @intFromPtr(qzz.ptr), qzz.len, 0, 0, 0);
}