PSR_I
enable_interrupts(PSR_I);
(spsr & (PSR_I | PSR_F)) != 0)
cspr = disable_interrupts(PSR_I);
cspr = disable_interrupts(PSR_I);
cspr = disable_interrupts(PSR_I);
if (__predict_true(frame->tf_spsr & PSR_I) == 0)
enable_interrupts(PSR_I);
if (__predict_true(tf->tf_spsr & PSR_I) == 0)
enable_interrupts(PSR_I);
disable_interrupts(PSR_I);
if (__predict_true(frame->tf_spsr & PSR_I) == 0)
enable_interrupts(PSR_I);
#define __ARM_INTR_BITS (PSR_I | PSR_F | PSR_A)
return (disable_interrupts(PSR_I | PSR_F));
kdb_frame->tf_spsr |= (PSR_A | PSR_I | PSR_F);
#define PSR_DAIF (PSR_D | PSR_A | PSR_I | PSR_F)
#define PSR_DAIF_INTR (PSR_I | PSR_F)
(PSR_I | PSR_F));
hypctx->tf.tf_spsr |= PSR_I | PSR_F;
hypctx->tf.tf_spsr &= ~(PSR_I | PSR_F);
(PSR_I | PSR_F));
hypctx->debug_spsr &= ~(PSR_I | PSR_F);
el2ctx->tf.tf_spsr = PSR_D | PSR_A | PSR_I | PSR_F;
if ((ks->status & PSR_I) == 0)
frame->tf_spsr &= ~PSR_I;
frame->tf_spsr |= PSR_I;