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Tweak definition of probestack functions #176
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It looks like the old `__rust_probestack` routine is incompatible with newer linux kernels. My best guess for this is that the kernel's auto-growth logic is failing to trigger, causing what looks like a legitimate segfault to get delivered. My best guess for why *that's* happening is that the faulting address is below `%rsp`, whereas previously all faulting stack addresses were above `%rsp`. The probestack routine does not modify `%rsp` as it's probing the stack, and presumably newer kernels are interpreting this as a legitimate violation. This commit tweaks the probestack routine to instead update `%rsp` incrementally as probing happens. The ABI of the function, however, requires that `%rsp` isn't changed as part of the function so it's restored at the end to the previous value.
@bors: r+ |
📌 Commit f9f6bd0 has been approved by |
Tweak definition of probestack functions It looks like the old `__rust_probestack` routine is incompatible with newer linux kernels. My best guess for this is that the kernel's auto-growth logic is failing to trigger, causing what looks like a legitimate segfault to get delivered. My best guess for why *that's* happening is that the faulting address is below `%rsp`, whereas previously all faulting stack addresses were above `%rsp`. The probestack routine does not modify `%rsp` as it's probing the stack, and presumably newer kernels are interpreting this as a legitimate violation. This commit tweaks the probestack routine to instead update `%rsp` incrementally as probing happens. The ABI of the function, however, requires that `%rsp` isn't changed as part of the function so it's restored at the end to the previous value.
💔 Test failed - status-appveyor |
@bors: r+ |
📌 Commit 2061072 has been approved by |
Tweak definition of probestack functions It looks like the old `__rust_probestack` routine is incompatible with newer linux kernels. My best guess for this is that the kernel's auto-growth logic is failing to trigger, causing what looks like a legitimate segfault to get delivered. My best guess for why *that's* happening is that the faulting address is below `%rsp`, whereas previously all faulting stack addresses were above `%rsp`. The probestack routine does not modify `%rsp` as it's probing the stack, and presumably newer kernels are interpreting this as a legitimate violation. This commit tweaks the probestack routine to instead update `%rsp` incrementally as probing happens. The ABI of the function, however, requires that `%rsp` isn't changed as part of the function so it's restored at the end to the previous value.
💔 Test failed - status-appveyor |
@bors: r+ |
📌 Commit 2bec5cf has been approved by |
Tweak definition of probestack functions It looks like the old `__rust_probestack` routine is incompatible with newer linux kernels. My best guess for this is that the kernel's auto-growth logic is failing to trigger, causing what looks like a legitimate segfault to get delivered. My best guess for why *that's* happening is that the faulting address is below `%rsp`, whereas previously all faulting stack addresses were above `%rsp`. The probestack routine does not modify `%rsp` as it's probing the stack, and presumably newer kernels are interpreting this as a legitimate violation. This commit tweaks the probestack routine to instead update `%rsp` incrementally as probing happens. The ABI of the function, however, requires that `%rsp` isn't changed as part of the function so it's restored at the end to the previous value.
💔 Test failed - status-appveyor |
@bors: r+ |
📌 Commit 787c58f has been approved by |
Tweak definition of probestack functions It looks like the old `__rust_probestack` routine is incompatible with newer linux kernels. My best guess for this is that the kernel's auto-growth logic is failing to trigger, causing what looks like a legitimate segfault to get delivered. My best guess for why *that's* happening is that the faulting address is below `%rsp`, whereas previously all faulting stack addresses were above `%rsp`. The probestack routine does not modify `%rsp` as it's probing the stack, and presumably newer kernels are interpreting this as a legitimate violation. This commit tweaks the probestack routine to instead update `%rsp` incrementally as probing happens. The ABI of the function, however, requires that `%rsp` isn't changed as part of the function so it's restored at the end to the previous value.
💔 Test failed - status-appveyor |
@bors: r+ |
📌 Commit 91eaa85 has been approved by |
Tweak definition of probestack functions It looks like the old `__rust_probestack` routine is incompatible with newer linux kernels. My best guess for this is that the kernel's auto-growth logic is failing to trigger, causing what looks like a legitimate segfault to get delivered. My best guess for why *that's* happening is that the faulting address is below `%rsp`, whereas previously all faulting stack addresses were above `%rsp`. The probestack routine does not modify `%rsp` as it's probing the stack, and presumably newer kernels are interpreting this as a legitimate violation. This commit tweaks the probestack routine to instead update `%rsp` incrementally as probing happens. The ABI of the function, however, requires that `%rsp` isn't changed as part of the function so it's restored at the end to the previous value.
☀️ Test successful - status-appveyor, status-travis |
It looks like the old
__rust_probestack
routine is incompatible with newerlinux kernels. My best guess for this is that the kernel's auto-growth logic is
failing to trigger, causing what looks like a legitimate segfault to get
delivered. My best guess for why that's happening is that the faulting address
is below
%rsp
, whereas previously all faulting stack addresses were above%rsp
. The probestack routine does not modify%rsp
as it's probing the stack,and presumably newer kernels are interpreting this as a legitimate violation.
This commit tweaks the probestack routine to instead update
%rsp
incrementallyas probing happens. The ABI of the function, however, requires that
%rsp
isn't changed as part of the function so it's restored at the end to the
previous value.