cr
calc_type cr, cg, cb, ca;
cr = r + c.r; r = (cr > calc_type(base_mask)) ? calc_type(base_mask) : cr;
cr = r + ((c.r * cover + cover_mask/2) >> cover_shift);
r = (cr > calc_type(base_mask)) ? calc_type(base_mask) : cr;
calc_type cr, cg, cb, ca;
cr = r + c.r; r = (cr > calc_type(base_mask)) ? calc_type(base_mask) : cr;
cr = r + ((c.r * cover + cover_mask) >> cover_shift);
r = (cr > calc_type(base_mask)) ? calc_type(base_mask) : cr;
unsigned cr, unsigned cg, unsigned cb,
p[Order::R] = (value_type)((p[Order::R] * alpha + cr * cover) >> base_shift);
unsigned cr, unsigned cg, unsigned cb,
p[Order::R] = (value_type)(((p[Order::R] * alpha) >> base_shift) + cr);
unsigned cr, unsigned cg, unsigned cb,
p[Order::R] = m_gamma->inv((((m_gamma->dir(cr) - r) * alpha) >> base_shift) + r);
unsigned cr, unsigned cg, unsigned cb,
p[Order::R] += (value_type)(((cr - p[Order::R]) * alpha) >> base_shift);
unsigned cr, unsigned cg, unsigned cb,
(((m_gamma->inv(((m_gamma->dir(cr) - r) * alpha + (r << 8)) >> 8) << 7) & 0x7C00) |
unsigned cr, unsigned cg, unsigned cb,
(((((cr - r) * alpha + (r << 8)) ) & 0xF800) |
unsigned cr, unsigned cg, unsigned cb,
((((r * alpha + cr * cover) ) & 0xF800) |
unsigned cr, unsigned cg, unsigned cb,
(((m_gamma->inv(((m_gamma->dir(cr) - r) * alpha + (r << 8)) >> 8) << 8) & 0xF800) |
unsigned cr, unsigned cg, unsigned cb,
(((((cr - r) * alpha + (r << 16)) >> 2) & 0x3FF00000) |
unsigned cr, unsigned cg, unsigned cb,
((((r * alpha + cr * cover) >> 2) & 0x3FF00000) |
unsigned cr, unsigned cg, unsigned cb,
(((m_gamma->inv(((m_gamma->dir(cr) - r) * alpha + (r << 16)) >> 16) << 14) & 0x3FF00000) |
unsigned cr, unsigned cg, unsigned cb,
unsigned cr, unsigned cg, unsigned cb,
(((cr - r) * alpha + (r << 16)) >> 22) | 0xC0000000);
unsigned cr, unsigned cg, unsigned cb,
((r * alpha + cr * cover) >> 22) | 0xC0000000);
unsigned cr, unsigned cg, unsigned cb,
(((((cr - r) * alpha + (r << 8)) >> 1) & 0x7C00) |
(m_gamma->inv(((m_gamma->dir(cr) - r) * alpha + (r << 16)) >> 16) >> 6 ) | 0xC0000000);
unsigned cr, unsigned cg, unsigned cb,
(((((cr - r) * alpha + (r << 16)) ) & 0xFFE00000) |
unsigned cr, unsigned cg, unsigned cb,
((((r * alpha + cr * cover) ) & 0xFFE00000) |
unsigned cr, unsigned cg, unsigned cb,
(((m_gamma->inv(((m_gamma->dir(cr) - r) * alpha + (r << 16)) >> 16) << 16) & 0xFFE00000) |
unsigned cr, unsigned cg, unsigned cb,
(((cr - r) * alpha + (r << 16)) >> 21));
unsigned cr, unsigned cg, unsigned cb,
((r * alpha + cr * cover) >> 21));
unsigned cr, unsigned cg, unsigned cb,
(m_gamma->inv(((m_gamma->dir(cr) - r) * alpha + (r << 16)) >> 16) >> 5 ));
unsigned cr, unsigned cg, unsigned cb,
((((r * alpha + cr * cover) >> 1) & 0x7C00) |
unsigned cr,
unsigned cr, unsigned cg, unsigned cb,
unsigned cr, unsigned cg, unsigned cb,
(p, (cr * ca + base_mask) >> base_shift,
p[Order::R] = (value_type)(((cr - r) * alpha + (r << base_shift)) >> base_shift);
unsigned cr, unsigned cg, unsigned cb,
cr = (cr * ca + base_mask) >> base_shift;
(p, (cr * da + base_mask) >> base_shift,
unsigned cr, unsigned cg, unsigned cb,
comp_op_table_rgba<ColorT, Order>::g_comp_op_func[op](p, cr, cg, cb, ca, cover);
unsigned cr, unsigned cg, unsigned cb,
(p, (cr * da + base_mask) >> base_shift,
unsigned cr, unsigned cg, unsigned cb,
(cr * ca + base_mask) >> base_shift,
unsigned cr, unsigned cg, unsigned cb,
cr = (cr * ca + base_mask) >> base_shift;
(cr * da + base_mask) >> base_shift,
unsigned cr, unsigned cg, unsigned cb,
(cr * da + base_mask) >> base_shift,
unsigned cr, unsigned cg, unsigned cb,
p[order_type::R] = cr;
Blender::blend_pix(p, cr, cg, cb, alpha);
unsigned cr, unsigned cg, unsigned cb,
copy_or_blend_pix(p, cr, cg, cb, alpha);
unsigned cr, unsigned cg, unsigned cb,
p[order_type::R] = cr;
Blender::blend_pix(p, cr, cg, cb, alpha, cover);
p[Order::R] = (value_type)((p[Order::R] * alpha + cr * cover) >> base_shift);
unsigned cr, unsigned cg, unsigned cb,
p[Order::R] = (value_type)(((p[Order::R] * alpha) >> base_shift) + cr);
unsigned cr, unsigned cg, unsigned cb,
p[Order::R] = (value_type)((((cr << base_shift) - r) * alpha + (r << base_shift)) / a);
ctr, xer, cr, msr, lr; /* misc. status */
uint32 cr;
command_registers cr = {
PTRACE(usti->udi, "command_registers sizeof:%d\n", sizeof(cr));
status = queue_bulk(usti->udi, &cr, sizeof(cr), false);
cr(console);
cr(console);
COLLATE ntfs_get_collate_function(COLLATION_RULES cr)
switch (cr) {
LOG_CLIENT_RECORD *ca, *cr;
idx = le16_to_cpu(cr->next_client)) {
cr = ca + idx;
if (cr->prev_client != LOGFILE_NO_CLIENT)
cr = outc[64+yin*8+xin], \
cg = (50 * cb + 130 * cr + 128) >> 8 \
cr = outc[64+yin*8+xin], \
cg = (3 * cb + 8 * cr) >> 4 \
STORECLAMP(p[(xout) * 3 + 2], y + cr), \
y = ((CLAMP(y + cr + add*2+1) & 0xf8) << 8) | \
y = ((CLAMP(y + cr + add*2+1) & 0xf8) << 7) | \
y = ((CLAMP(y + cr + add*2+1) & 0xf8) << 8) | \
int cr, cg, cb, y;
double cr;
cr = cos(rotation);
tmpX1 = s->position[0] * cr - s->position[1] * sr;
tmpY1 = s->position[1] * cr + s->position[0] * sr;
tmpX2 = tmpX1 * cr - tmpZ1 * sr;
tmpZ2 = tmpZ1 * cr + tmpX1 * sr;
tmpY3 = tmpY2 * cr - tmpZ2 * sr;
tmpZ3 = tmpZ2 * cr + tmpY2 * sr + seraphDistance;
cr = cos(rotation);
tmpX4 = tmpX3 * cr - tmpY3 * sr;
tmpY4 = tmpY3 * cr + tmpX3 * sr;
tmpY1 = s->position[1] * cr + s->position[0] * sr;
tmpX2 = tmpX1 * cr - tmpZ1 * sr;
tmpZ2 = tmpZ1 * cr + tmpX1 * sr;
tmpY3 = tmpY2 * cr - tmpZ2 * sr;
tmpZ3 = tmpZ2 * cr + tmpY2 * sr + seraphDistance;
cr = cos(rotation);
tmpX4 = tmpX3 * cr - tmpY3 * sr;
tmpY4 = tmpY3 * cr + tmpX3 * sr;
double cr;
cr = cos(rotation);
tmpX1 = s->position[0] * cr - s->position[1] * sr;
uint8_t* cr = static_cast<uint8_t*>(malloc(bitsSize / 3));
cr[i] = pixels[3 * i + 2];
image->yuvPlanes[2] = cr;
BRect cr(c, c);
cr.InsetBy(-3.0, -3.0);
into->StrokeEllipse(cr, B_SOLID_HIGH);
cr.InsetBy(1.0, 1.0);
into->StrokeEllipse(cr, B_SOLID_LOW);
BMenuItem* cr = new BMenuItem("CR (\\r)", message);
fLineTerminatorMenu->AddItem(cr);
int32 cr = contents.FindFirst('\n');
if (cr < 0)
cr = contents.Length();
contents.CopyInto(line, 0, cr);
contents.Remove(0, cr+1);
int32 cr = contents.FindFirst('\n');
if (cr < 0)
cr = contents.Length();
contents.CopyInto(line, 0, cr);
contents.Remove(0, cr+1);
#define CRED_TO_VNET(cr) (cr)->cr_prison->pr_vnet
#define CRED_TO_VNET(cr) NULL
#define PCI_CLASS(cr) \
(((cr) >> PCI_CLASS_SHIFT) & PCI_CLASS_MASK)
#define PCI_SUBCLASS(cr) \
(((cr) >> PCI_SUBCLASS_SHIFT) & PCI_SUBCLASS_MASK)
#define PCI_INTERFACE(cr) \
(((cr) >> PCI_INTERFACE_SHIFT) & PCI_INTERFACE_MASK)
#define PCI_REVISION(cr) \
(((cr) >> PCI_REVISION_SHIFT) & PCI_REVISION_MASK)
#define PCI_CAPLIST_NEXT(cr) (((cr) >> 8) & 0xff)
#define PCI_CAPLIST_CAP(cr) ((cr) & 0xff)
#define PCI_HT_CAP(cr) ((((cr) >> 27) < 0x08) ? \
(((cr) >> 27) & 0x1c) : (((cr) >> 27) & 0x1f))
analyze_unsolvable(Solver *solv, Rule *cr, int disablerules)
r = cr;
uint32 cr = PL01x_CR_UARTEN;
cr |= PL011_CR_TXE;
cr |= PL011_CR_LBE;
Out32(PL011_CR, cr);
cr = PL01x_CR_UARTEN | PL011_CR_RXE | PL011_CR_TXE;
Out32(PL011_CR, cr);
uint32 cr = PL01x_CR_UARTEN;
cr |= PL011_CR_TXE | PL011_CR_RXE;
Out32(PL011_CR, cr);
frame->lr, frame->cr, frame->xer, frame->ctr);
dprintf(" cr 0x%08lx lr 0x%08lx\n", frame->cr, frame->lr);