Compare commits

...

6 Commits

Author SHA1 Message Date
Ayke van Laethem ebde8b5875 targets/gba: implement interrupt handler 2020-01-06 14:45:32 +01:00
Ayke van Laethem 9d50587d63 targets/gba: make linker script cleaner
Make it clearer where the stack is located.
2020-01-06 11:48:09 +01:00
Ayke van Laethem 5e6f1725ac WIP interrupts via ptrtoint handler 2020-01-05 08:05:38 +01:00
Ayke van Laethem 9cdc2fa768 WIP: interrupt API 2020-01-04 23:40:45 +01:00
Ayke van Laethem 084386262a compiler: add support for debugging globals
This makes most globals visible from GDB, using `info variables`.
2020-01-04 23:40:44 +01:00
Ayke van Laethem 674ddef219 compiler: add globaldce pass to start of optimization pipeline
This reduces code size in a few cases when tested against the drivers
smoketests (although there was one minor increase) without significantly
increasing compile time. In fact, in my testing compile time appears to
be going down a little bit (around 1%, within the noise).
2020-01-04 23:40:44 +01:00
39 changed files with 705 additions and 213 deletions
+18 -13
View File
@@ -217,7 +217,7 @@ func (c *Compiler) Compile(mainPath string) []error {
path = path[len(tinygoPath+"/src/"):]
}
switch path {
case "machine", "os", "reflect", "runtime", "runtime/volatile", "sync", "testing", "internal/reflectlite":
case "machine", "os", "reflect", "runtime", "runtime/interrupt", "runtime/volatile", "sync", "testing", "internal/reflectlite":
return path
default:
if strings.HasPrefix(path, "device/") || strings.HasPrefix(path, "examples/") {
@@ -771,14 +771,6 @@ func (c *Compiler) attachDebugInfo(f *ir.Function) llvm.Metadata {
}
func (c *Compiler) attachDebugInfoRaw(f *ir.Function, llvmFn llvm.Value, suffix, filename string, line int) llvm.Metadata {
if _, ok := c.difiles[filename]; !ok {
dir, file := filepath.Split(filename)
if dir != "" {
dir = dir[:len(dir)-1]
}
c.difiles[filename] = c.dibuilder.CreateFile(file, dir)
}
// Debug info for this function.
diparams := make([]llvm.Metadata, 0, len(f.Params))
for _, param := range f.Params {
@@ -792,7 +784,7 @@ func (c *Compiler) attachDebugInfoRaw(f *ir.Function, llvmFn llvm.Value, suffix,
difunc := c.dibuilder.CreateFunction(c.difiles[filename], llvm.DIFunction{
Name: f.RelString(nil) + suffix,
LinkageName: f.LinkName() + suffix,
File: c.difiles[filename],
File: c.getDIFile(filename),
Line: line,
Type: diFuncType,
LocalToUnit: true,
@@ -805,6 +797,20 @@ func (c *Compiler) attachDebugInfoRaw(f *ir.Function, llvmFn llvm.Value, suffix,
return difunc
}
// getDIFile returns a DIFile metadata node for the given filename. It tries to
// use one that was already created, otherwise it falls back to creating a new
// one.
func (c *Compiler) getDIFile(filename string) llvm.Metadata {
if _, ok := c.difiles[filename]; !ok {
dir, file := filepath.Split(filename)
if dir != "" {
dir = dir[:len(dir)-1]
}
c.difiles[filename] = c.dibuilder.CreateFile(file, dir)
}
return c.difiles[filename]
}
func (c *Compiler) parseFunc(frame *Frame) {
if c.DumpSSA() {
fmt.Printf("\nfunc %s:\n", frame.fn.Function)
@@ -822,9 +828,6 @@ func (c *Compiler) parseFunc(frame *Frame) {
frame.fn.LLVMFn.SetLinkage(llvm.InternalLinkage)
frame.fn.LLVMFn.SetUnnamedAddr(true)
}
if frame.fn.IsInterrupt() && strings.HasPrefix(c.Triple(), "avr") {
frame.fn.LLVMFn.SetFunctionCallConv(85) // CallingConv::AVR_SIGNAL
}
// Some functions have a pragma controlling the inlining level.
switch frame.fn.Inline() {
@@ -1306,6 +1309,8 @@ func (c *Compiler) parseCall(frame *Frame, instr *ssa.CallCommon) (llvm.Value, e
return c.emitVolatileLoad(frame, instr)
case strings.HasPrefix(name, "runtime/volatile.Store"):
return c.emitVolatileStore(frame, instr)
case name == "runtime/interrupt.New" && len(fn.Blocks) == 0:
return c.emitInterruptGlobal(frame, instr)
}
targetFunc := c.ir.GetFunction(fn)
+91
View File
@@ -0,0 +1,91 @@
package compiler
import (
"strconv"
"strings"
"golang.org/x/tools/go/ssa"
"tinygo.org/x/go-llvm"
)
// emitInterruptGlobal creates a new runtime/interrupt.Interrupt struct that
// will be lowered to a real interrupt during interrupt lowering.
//
// This two-stage approach allows unused interrupts to be optimized away if
// necessary.
func (c *Compiler) emitInterruptGlobal(frame *Frame, instr *ssa.CallCommon) (llvm.Value, error) {
// Get the interrupt number, which must be a compile-time constant.
id, ok := instr.Args[0].(*ssa.Const)
if !ok {
return llvm.Value{}, c.makeError(instr.Pos(), "interrupt ID is not a constant")
}
// Get the func value, which also must be a compile time constant.
// Note that bound functions are allowed if the function has a pointer
// receiver and is a global. This is rather strict but still allows for
// idiomatic Go code.
funcValue := c.getValue(frame, instr.Args[1])
if funcValue.IsAConstant().IsNil() {
// Try to determine the cause of the non-constantness for a nice error
// message.
switch instr.Args[1].(type) {
case *ssa.MakeClosure:
// This may also be a bound method.
return llvm.Value{}, c.makeError(instr.Pos(), "closures are not supported in interrupt.New")
}
// Fall back to a generic error.
return llvm.Value{}, c.makeError(instr.Pos(), "interrupt function must be constant")
}
// Create a new global of type runtime/interrupt.handle. Globals of this
// type are lowered in the interrupt lowering pass.
globalType := c.ir.Program.ImportedPackage("runtime/interrupt").Type("handle").Type()
globalLLVMType := c.getLLVMType(globalType)
globalName := "runtime/interrupt.$interrupt" + strconv.FormatInt(id.Int64(), 10)
if global := c.mod.NamedGlobal(globalName); !global.IsNil() {
return llvm.Value{}, c.makeError(instr.Pos(), "interrupt redeclared in this program")
}
global := llvm.AddGlobal(c.mod, globalLLVMType, globalName)
global.SetLinkage(llvm.PrivateLinkage)
global.SetGlobalConstant(true)
initializer := llvm.ConstNull(globalLLVMType)
initializer = llvm.ConstInsertValue(initializer, funcValue, []uint32{0})
initializer = llvm.ConstInsertValue(initializer, llvm.ConstInt(c.intType, uint64(id.Int64()), true), []uint32{1, 0})
global.SetInitializer(initializer)
// Add debug info to the interrupt global.
if c.Debug() {
pos := c.ir.Program.Fset.Position(instr.Pos())
diglobal := c.dibuilder.CreateGlobalVariableExpression(c.difiles[pos.Filename], llvm.DIGlobalVariableExpression{
Name: "interrupt" + strconv.FormatInt(id.Int64(), 10),
LinkageName: globalName,
File: c.getDIFile(pos.Filename),
Line: pos.Line,
Type: c.getDIType(globalType),
Expr: c.dibuilder.CreateExpression(nil),
LocalToUnit: false,
})
global.AddMetadata(0, diglobal)
}
// Create the runtime/interrupt.Interrupt type. It is a struct with a single
// member of type int.
num := llvm.ConstPtrToInt(global, c.intType)
interrupt := llvm.ConstNamedStruct(c.mod.GetTypeByName("runtime/interrupt.Interrupt"), []llvm.Value{num})
// Add dummy "use" call for AVR, because interrupts may be used even though
// they are never referenced again. This is unlike Cortex-M or the RISC-V
// PLIC where each interrupt must be enabled using the interrupt number, and
// thus keeps the Interrupt object alive.
// This call is removed during interrupt lowering.
if strings.HasPrefix(c.Triple(), "avr") {
useFn := c.mod.NamedFunction("runtime/interrupt.use")
if useFn.IsNil() {
useFnType := llvm.FunctionType(c.ctx.VoidType(), []llvm.Type{interrupt.Type()}, false)
useFn = llvm.AddFunction(c.mod, "runtime/interrupt.use", useFnType)
}
c.builder.CreateCall(useFn, []llvm.Value{interrupt}, "")
}
return interrupt, nil
}
+11
View File
@@ -45,6 +45,7 @@ func (c *Compiler) Optimize(optLevel, sizeLevel int, inlinerThreshold uint) []er
// Run some preparatory passes for the Go optimizer.
goPasses := llvm.NewPassManager()
defer goPasses.Dispose()
goPasses.AddGlobalDCEPass()
goPasses.AddGlobalOptimizerPass()
goPasses.AddConstantPropagationPass()
goPasses.AddAggressiveDCEPass()
@@ -56,6 +57,12 @@ func (c *Compiler) Optimize(optLevel, sizeLevel int, inlinerThreshold uint) []er
transform.OptimizeStringToBytes(c.mod)
transform.OptimizeAllocs(c.mod)
transform.LowerInterfaces(c.mod)
errs := transform.LowerInterruptRegistrations(c.mod)
if len(errs) > 0 {
return errs
}
if c.funcImplementation() == funcValueSwitch {
transform.LowerFuncValues(c.mod)
}
@@ -99,6 +106,10 @@ func (c *Compiler) Optimize(optLevel, sizeLevel int, inlinerThreshold uint) []er
if err != nil {
return []error{err}
}
errs := transform.LowerInterruptRegistrations(c.mod)
if len(errs) > 0 {
return errs
}
}
if c.VerifyIR() {
if errs := c.checkModule(); errs != nil {
+33 -3
View File
@@ -60,14 +60,44 @@ func (c *Compiler) getGlobal(g *ssa.Global) llvm.Value {
info := c.getGlobalInfo(g)
llvmGlobal := c.mod.NamedGlobal(info.linkName)
if llvmGlobal.IsNil() {
llvmType := c.getLLVMType(g.Type().(*types.Pointer).Elem())
typ := g.Type().(*types.Pointer).Elem()
llvmType := c.getLLVMType(typ)
llvmGlobal = llvm.AddGlobal(c.mod, llvmType, info.linkName)
if !info.extern {
llvmGlobal.SetInitializer(llvm.ConstNull(llvmType))
llvmGlobal.SetLinkage(llvm.InternalLinkage)
}
if info.align > c.targetData.ABITypeAlignment(llvmType) {
llvmGlobal.SetAlignment(info.align)
// Set alignment from the //go:align comment.
var alignInBits uint32
if info.align < 0 || info.align&(info.align-1) != 0 {
// Check for power-of-two (or 0).
// See: https://stackoverflow.com/a/108360
c.addError(g.Pos(), "global variable alignment must be a positive power of two")
} else {
// Set the alignment only when it is a power of two.
alignInBits = uint32(info.align) ^ uint32(info.align-1)
if info.align > c.targetData.ABITypeAlignment(llvmType) {
llvmGlobal.SetAlignment(info.align)
}
}
if c.Debug() {
// Add debug info.
// TODO: this should be done for every global in the program, not just
// the ones that are referenced from some code.
pos := c.ir.Program.Fset.Position(g.Pos())
diglobal := c.dibuilder.CreateGlobalVariableExpression(c.difiles[pos.Filename], llvm.DIGlobalVariableExpression{
Name: g.RelString(nil),
LinkageName: info.linkName,
File: c.getDIFile(pos.Filename),
Line: pos.Line,
Type: c.getDIType(typ),
LocalToUnit: false,
Expr: c.dibuilder.CreateExpression(nil),
AlignInBits: alignInBits,
})
llvmGlobal.AddMetadata(0, diglobal)
}
}
return llvmGlobal
+1 -1
View File
@@ -10,5 +10,5 @@ require (
go.bug.st/serial.v1 v0.0.0-20180827123349-5f7892a7bb45
golang.org/x/sys v0.0.0-20191010194322-b09406accb47 // indirect
golang.org/x/tools v0.0.0-20190227180812-8dcc6e70cdef
tinygo.org/x/go-llvm v0.0.0-20191215173731-ad71f3d24aae
tinygo.org/x/go-llvm v0.0.0-20200104190746-1ff21df33566
)
+2
View File
@@ -32,3 +32,5 @@ tinygo.org/x/go-llvm v0.0.0-20191124211856-b2db3df3f257 h1:o8VDylrMN7gWemBMu8rEy
tinygo.org/x/go-llvm v0.0.0-20191124211856-b2db3df3f257/go.mod h1:fv1F0BSNpxMfCL0zF3M4OPFbgYHnhtB6ST0HvUtu/LE=
tinygo.org/x/go-llvm v0.0.0-20191215173731-ad71f3d24aae h1:s8J5EyxCkHxXB08UI3gk9W9IS/ekizRvSX+PfZxnAB0=
tinygo.org/x/go-llvm v0.0.0-20191215173731-ad71f3d24aae/go.mod h1:fv1F0BSNpxMfCL0zF3M4OPFbgYHnhtB6ST0HvUtu/LE=
tinygo.org/x/go-llvm v0.0.0-20200104190746-1ff21df33566 h1:a4y30bTf7U0zDA75v2PTL+XQ2OzJetj19gK8XwQpUNY=
tinygo.org/x/go-llvm v0.0.0-20200104190746-1ff21df33566/go.mod h1:fv1F0BSNpxMfCL0zF3M4OPFbgYHnhtB6ST0HvUtu/LE=
+7 -28
View File
@@ -27,14 +27,13 @@ type Program struct {
// Function or method.
type Function struct {
*ssa.Function
LLVMFn llvm.Value
module string // go:wasm-module
linkName string // go:linkname, go:export, go:interrupt
exported bool // go:export
nobounds bool // go:nobounds
flag bool // used by dead code elimination
interrupt bool // go:interrupt
inline InlineType // go:inline
LLVMFn llvm.Value
module string // go:wasm-module
linkName string // go:linkname, go:export
exported bool // go:export
nobounds bool // go:nobounds
flag bool // used by dead code elimination
inline InlineType // go:inline
}
// Interface type that is at some point used in a type assert (to check whether
@@ -243,18 +242,6 @@ func (f *Function) parsePragmas() {
f.inline = InlineHint
case "//go:noinline":
f.inline = InlineNone
case "//go:interrupt":
if len(parts) != 2 {
continue
}
name := parts[1]
if strings.HasSuffix(name, "_vect") {
// AVR vector naming
name = "__vector_" + name[:len(name)-5]
}
f.linkName = name
f.exported = true
f.interrupt = true
case "//go:linkname":
if len(parts) != 3 || parts[1] != f.Name() {
continue
@@ -288,14 +275,6 @@ func (f *Function) IsExported() bool {
return f.exported || f.CName() != ""
}
// Return true for functions annotated with //go:interrupt. The function name is
// already customized in LinkName() to hook up in the interrupt vector.
//
// On some platforms (like AVR), interrupts need a special compiler flag.
func (f *Function) IsInterrupt() bool {
return f.interrupt
}
// Return the inline directive of this function.
func (f *Function) Inline() InlineType {
return f.inline
+8 -11
View File
@@ -2,7 +2,10 @@
package machine
import "device/sam"
import (
"device/sam"
"runtime/interrupt"
)
// UART1 on the Arduino Nano 33 connects to the onboard NINA-W102 WiFi chip.
var (
@@ -13,11 +16,6 @@ var (
}
)
//go:export SERCOM3_IRQHandler
func handleUART1() {
defaultUART1Handler()
}
// UART2 on the Arduino Nano 33 connects to the normal TX/RX pins.
var (
UART2 = UART{
@@ -27,11 +25,10 @@ var (
}
)
//go:export SERCOM5_IRQHandler
func handleUART2() {
// should reset IRQ
UART2.Receive(byte((UART2.Bus.DATA.Get() & 0xFF)))
UART2.Bus.INTFLAG.SetBits(sam.SERCOM_USART_INTFLAG_RXC)
func init() {
// Work around circular definitions.
UART1.interrupt = interrupt.New(sam.IRQ_SERCOM3, UART1.handleInterrupt)
UART2.interrupt = interrupt.New(sam.IRQ_SERCOM5, UART2.handleInterrupt)
}
// I2C on the Arduino Nano 33.
+6 -5
View File
@@ -2,7 +2,10 @@
package machine
import "device/stm32"
import (
"device/stm32"
"runtime/interrupt"
)
// https://wiki.stm32duino.com/index.php?title=File:Bluepillpinout.gif
const (
@@ -61,14 +64,12 @@ var (
UART0 = UART{
Buffer: NewRingBuffer(),
Bus: stm32.USART1,
IRQVal: stm32.IRQ_USART1,
}
UART1 = &UART0
)
//go:export USART1_IRQHandler
func handleUART1() {
UART1.Receive(byte((UART1.Bus.DR.Get() & 0xFF)))
func init() {
UART0.interrupt = interrupt.New(stm32.IRQ_USART1, UART0.handleInterrupt)
}
// SPI pins
@@ -2,7 +2,10 @@
package machine
import "device/sam"
import (
"device/sam"
"runtime/interrupt"
)
// UART1 on the Circuit Playground Express.
var (
@@ -13,9 +16,8 @@ var (
}
)
//go:export SERCOM1_IRQHandler
func handleUART1() {
defaultUART1Handler()
func init() {
UART1.interrupt = interrupt.New(sam.IRQ_SERCOM4, UART1.handleInterrupt)
}
// I2C on the Circuit Playground Express.
+6 -4
View File
@@ -2,7 +2,10 @@
package machine
import "device/sam"
import (
"device/sam"
"runtime/interrupt"
)
// used to reset into bootloader
const RESET_MAGIC_VALUE = 0xf01669ef
@@ -60,9 +63,8 @@ var (
}
)
//go:export SERCOM1_IRQHandler
func handleUART1() {
defaultUART1Handler()
func init() {
UART1.interrupt = interrupt.New(sam.IRQ_SERCOM1, UART1.handleInterrupt)
}
// I2C pins
+3 -3
View File
@@ -4,6 +4,7 @@ package machine
import (
"device/sam"
"runtime/interrupt"
)
// used to reset into bootloader
@@ -62,9 +63,8 @@ var (
}
)
//go:export SERCOM1_IRQHandler
func handleUART1() {
defaultUART1Handler()
func init() {
UART1.interrupt = interrupt.New(sam.IRQ_SERCOM1, UART1.handleInterrupt)
}
// I2C pins
+6 -5
View File
@@ -2,7 +2,10 @@
package machine
import "device/stm32"
import (
"device/stm32"
"runtime/interrupt"
)
const (
PA0 = portA + 0
@@ -100,14 +103,12 @@ var (
UART0 = UART{
Buffer: NewRingBuffer(),
Bus: stm32.USART2,
IRQVal: stm32.IRQ_USART2,
}
UART2 = &UART0
)
//go:export USART2_IRQHandler
func handleUART2() {
UART2.Receive(byte((UART2.Bus.DR.Get() & 0xFF)))
func init() {
UART0.interrupt = interrupt.New(stm32.IRQ_USART2, UART0.handleInterrupt)
}
// SPI pins
+6 -4
View File
@@ -2,7 +2,10 @@
package machine
import "device/sam"
import (
"device/sam"
"runtime/interrupt"
)
// used to reset into bootloader
const RESET_MAGIC_VALUE = 0xf01669ef
@@ -51,9 +54,8 @@ var (
}
)
//go:export SERCOM1_IRQHandler
func handleUART1() {
defaultUART1Handler()
func init() {
UART1.interrupt = interrupt.New(sam.IRQ_SERCOM0, UART1.handleInterrupt)
}
// SPI pins
+13 -12
View File
@@ -4,6 +4,7 @@ package machine
import (
"device/avr"
"runtime/interrupt"
"runtime/volatile"
)
@@ -232,6 +233,18 @@ func (uart UART) Configure(config UARTConfig) {
config.BaudRate = 9600
}
// Register the UART interrupt.
interrupt.New(avr.IRQ_USART_RX, func(intr interrupt.Interrupt) {
// Read register to clear it.
data := avr.UDR0.Get()
// Ensure no error.
if !avr.UCSR0A.HasBits(avr.UCSR0A_FE0 | avr.UCSR0A_DOR0 | avr.UCSR0A_UPE0) {
// Put data from UDR register into buffer.
UART0.Receive(byte(data))
}
})
// Set baud rate based on prescale formula from
// https://www.microchip.com/webdoc/AVRLibcReferenceManual/FAQ_1faq_wrong_baud_rate.html
// ((F_CPU + UART_BAUD_RATE * 8L) / (UART_BAUD_RATE * 16L) - 1)
@@ -254,15 +267,3 @@ func (uart UART) WriteByte(c byte) error {
avr.UDR0.Set(c) // send char
return nil
}
//go:interrupt USART_RX_vect
func handleUSART_RX() {
// Read register to clear it.
data := avr.UDR0.Get()
// Ensure no error.
if !avr.UCSR0A.HasBits(avr.UCSR0A_FE0 | avr.UCSR0A_DOR0 | avr.UCSR0A_UPE0) {
// Put data from UDR register into buffer.
UART0.Receive(byte(data))
}
}
+14 -14
View File
@@ -11,6 +11,7 @@ import (
"device/arm"
"device/sam"
"errors"
"runtime/interrupt"
"unsafe"
)
@@ -292,9 +293,10 @@ func waitADCSync() {
// UART on the SAMD21.
type UART struct {
Buffer *RingBuffer
Bus *sam.SERCOM_USART_Type
SERCOM uint8
Buffer *RingBuffer
Bus *sam.SERCOM_USART_Type
SERCOM uint8
interrupt interrupt.Interrupt
}
var (
@@ -401,10 +403,7 @@ func (uart UART) Configure(config UARTConfig) error {
uart.Bus.INTENSET.Set(sam.SERCOM_USART_INTENSET_RXC)
// Enable RX IRQ.
// IRQ lines are in the same order as SERCOM instance numbers on SAMD21
// chips, so the IRQ number can be trivially determined from the SERCOM
// number.
arm.EnableIRQ(sam.IRQ_SERCOM0 + uint32(uart.SERCOM))
uart.interrupt.Enable()
return nil
}
@@ -432,11 +431,12 @@ func (uart UART) WriteByte(c byte) error {
return nil
}
// defaultUART1Handler handles the UART1 IRQ.
func defaultUART1Handler() {
// handleInterrupt should be called from the appropriate interrupt handler for
// this UART instance.
func (uart *UART) handleInterrupt(interrupt.Interrupt) {
// should reset IRQ
UART1.Receive(byte((UART1.Bus.DATA.Get() & 0xFF)))
UART1.Bus.INTFLAG.SetBits(sam.SERCOM_USART_INTFLAG_RXC)
uart.Receive(byte((uart.Bus.DATA.Get() & 0xFF)))
uart.Bus.INTFLAG.SetBits(sam.SERCOM_USART_INTFLAG_RXC)
}
// I2C on the SAMD21.
@@ -1368,7 +1368,8 @@ func (usbcdc USBCDC) Configure(config UARTConfig) {
sam.USB_DEVICE.CTRLA.SetBits(sam.USB_DEVICE_CTRLA_ENABLE)
// enable IRQ
arm.EnableIRQ(sam.IRQ_USB)
intr := interrupt.New(sam.IRQ_USB, handleUSB)
intr.Enable()
}
func handlePadCalibration() {
@@ -1414,8 +1415,7 @@ func handlePadCalibration() {
sam.USB_DEVICE.PADCAL.SetBits(calibTrim << sam.USB_DEVICE_PADCAL_TRIM_Pos)
}
//go:export USB_IRQHandler
func handleUSB() {
func handleUSB(intr interrupt.Interrupt) {
// reset all interrupt flags
flags := sam.USB_DEVICE.INTFLAG.Get()
sam.USB_DEVICE.INTFLAG.Set(flags)
+7 -26
View File
@@ -11,6 +11,7 @@ import (
"device/arm"
"device/sam"
"errors"
"runtime/interrupt"
"unsafe"
)
@@ -1402,11 +1403,11 @@ func (usbcdc USBCDC) Configure(config UARTConfig) {
// enable USB
sam.USB_DEVICE.CTRLA.SetBits(sam.USB_DEVICE_CTRLA_ENABLE)
// enable IRQ
arm.EnableIRQ(sam.IRQ_USB_OTHER)
arm.EnableIRQ(sam.IRQ_USB_SOF_HSOF)
arm.EnableIRQ(sam.IRQ_USB_TRCPT0)
arm.EnableIRQ(sam.IRQ_USB_TRCPT1)
// enable IRQ at highest priority
interrupt.New(sam.IRQ_USB_OTHER, handleUSBIRQ).Enable()
interrupt.New(sam.IRQ_USB_SOF_HSOF, handleUSBIRQ).Enable()
interrupt.New(sam.IRQ_USB_TRCPT0, handleUSBIRQ).Enable()
interrupt.New(sam.IRQ_USB_TRCPT1, handleUSBIRQ).Enable()
}
func handlePadCalibration() {
@@ -1452,27 +1453,7 @@ func handlePadCalibration() {
sam.USB_DEVICE.PADCAL.SetBits(calibTrim << sam.USB_DEVICE_PADCAL_TRIM_Pos)
}
//go:export USB_OTHER_IRQHandler
func handleUSBOther() {
handleUSBIRQ()
}
//go:export USB_SOF_HSOF_IRQHandler
func handleUSBSOFHSOF() {
handleUSBIRQ()
}
//go:export USB_TRCPT0_IRQHandler
func handleUSBTRCPT0() {
handleUSBIRQ()
}
//go:export USB_TRCPT1_IRQHandler
func handleUSBTRCPT1() {
handleUSBIRQ()
}
func handleUSBIRQ() {
func handleUSBIRQ(interrupt.Interrupt) {
// reset all interrupt flags
flags := sam.USB_DEVICE.INTFLAG.Get()
sam.USB_DEVICE.INTFLAG.Set(flags)
+6 -3
View File
@@ -3,9 +3,9 @@
package machine
import (
"device/arm"
"device/nrf"
"errors"
"runtime/interrupt"
)
var (
@@ -88,8 +88,11 @@ func (uart UART) Configure(config UARTConfig) {
nrf.UART0.INTENSET.Set(nrf.UART_INTENSET_RXDRDY_Msk)
// Enable RX IRQ.
arm.SetPriority(nrf.IRQ_UART0, 0xc0) // low priority
arm.EnableIRQ(nrf.IRQ_UART0)
intr := interrupt.New(nrf.IRQ_UART0, func(intr interrupt.Interrupt) {
UART0.handleInterrupt()
})
intr.SetPriority(0xc0) // low priority
intr.Enable()
}
// SetBaudRate sets the communication speed for the UART.
-5
View File
@@ -20,11 +20,6 @@ func (uart UART) setPins(tx, rx Pin) {
nrf.UART0.PSELRXD.Set(uint32(rx))
}
//go:export UART0_IRQHandler
func handleUART0() {
UART0.handleInterrupt()
}
func (i2c I2C) setPins(scl, sda Pin) {
i2c.Bus.PSELSCL.Set(uint32(scl))
i2c.Bus.PSELSDA.Set(uint32(sda))
-5
View File
@@ -21,11 +21,6 @@ func (uart UART) setPins(tx, rx Pin) {
nrf.UART0.PSELRXD.Set(uint32(rx))
}
//go:export UARTE0_UART0_IRQHandler
func handleUART0() {
UART0.handleInterrupt()
}
func (i2c I2C) setPins(scl, sda Pin) {
i2c.Bus.PSELSCL.Set(uint32(scl))
i2c.Bus.PSELSDA.Set(uint32(sda))
-5
View File
@@ -25,11 +25,6 @@ func (uart UART) setPins(tx, rx Pin) {
nrf.UART0.PSEL.RXD.Set(uint32(rx))
}
//go:export UARTE0_UART0_IRQHandler
func handleUART0() {
UART0.handleInterrupt()
}
func (i2c I2C) setPins(scl, sda Pin) {
i2c.Bus.PSEL.SCL.Set(uint32(scl))
i2c.Bus.PSEL.SDA.Set(uint32(sda))
+12 -6
View File
@@ -5,9 +5,9 @@ package machine
// Peripheral abstraction layer for the stm32.
import (
"device/arm"
"device/stm32"
"errors"
"runtime/interrupt"
)
func CPUFrequency() uint32 {
@@ -111,9 +111,9 @@ func (p Pin) Get() bool {
// UART
type UART struct {
Buffer *RingBuffer
Bus *stm32.USART_Type
IRQVal uint32
Buffer *RingBuffer
Bus *stm32.USART_Type
interrupt interrupt.Interrupt
}
// Configure the UART.
@@ -155,8 +155,8 @@ func (uart UART) Configure(config UARTConfig) {
uart.Bus.CR1.Set(stm32.USART_CR1_TE | stm32.USART_CR1_RE | stm32.USART_CR1_RXNEIE | stm32.USART_CR1_UE)
// Enable RX IRQ
arm.SetPriority(uart.IRQVal, 0xc0)
arm.EnableIRQ(uart.IRQVal)
uart.interrupt.SetPriority(0xc0)
uart.interrupt.Enable()
}
// SetBaudRate sets the communication speed for the UART.
@@ -182,6 +182,12 @@ func (uart UART) WriteByte(c byte) error {
return nil
}
// handleInterrupt should be called from the appropriate interrupt handler for
// this UART instance.
func (uart *UART) handleInterrupt(interrupt.Interrupt) {
uart.Receive(byte((uart.Bus.DR.Get() & 0xFF)))
}
// SPI on the STM32.
type SPI struct {
Bus *stm32.SPI_Type
+6 -8
View File
@@ -5,8 +5,8 @@ package machine
// Peripheral abstraction layer for the stm32.
import (
"device/arm"
"device/stm32"
"runtime/interrupt"
)
func CPUFrequency() uint32 {
@@ -203,8 +203,11 @@ func (uart UART) Configure(config UARTConfig) {
stm32.USART2.CR1.Set(stm32.USART_CR1_TE | stm32.USART_CR1_RE | stm32.USART_CR1_RXNEIE | stm32.USART_CR1_UE)
// Enable RX IRQ.
arm.SetPriority(stm32.IRQ_USART2, 0xc0)
arm.EnableIRQ(stm32.IRQ_USART2)
intr := interrupt.New(stm32.IRQ_USART2, func(interrupt.Interrupt) {
UART1.Receive(byte((stm32.USART2.DR.Get() & 0xFF)))
})
intr.SetPriority(0xc0)
intr.Enable()
}
// WriteByte writes a byte of data to the UART.
@@ -215,8 +218,3 @@ func (uart UART) WriteByte(c byte) error {
}
return nil
}
//go:export USART2_IRQHandler
func handleUSART2() {
UART1.Receive(byte((stm32.USART2.DR.Get() & 0xFF)))
}
+14
View File
@@ -0,0 +1,14 @@
// Package interrupt provides access to hardware interrupts. It provides a way
// to define interrupts and to enable/disable them.
package interrupt
// Interrupt provides direct access to hardware interrupts. You can configure
// this interrupt through this interface.
//
// Do not use the zero value of an Interrupt object. Instead, call New to obtain
// an interrupt handle.
type Interrupt struct {
// Make this number unexported so it cannot be set directly. This provides
// some encapsulation.
num int
}
@@ -0,0 +1,23 @@
// +build cortexm
package interrupt
import (
"device/arm"
)
// Enable enables this interrupt. Right after calling this function, the
// interrupt may be invoked if it was already pending.
func (irq Interrupt) Enable() {
arm.EnableIRQ(uint32(irq.num))
}
// SetPriority sets the interrupt priority for this interrupt. A lower number
// means a higher priority. Additionally, most hardware doesn't implement all
// priority bits (only the uppoer bits).
//
// Examples: 0xff (lowest priority), 0xc0 (low priority), 0x00 (highest possible
// priority).
func (irq Interrupt) SetPriority(priority uint8) {
arm.SetPriority(uint32(irq.num), uint32(priority))
}
@@ -0,0 +1,59 @@
// +build gameboyadvance
package interrupt
import (
"runtime/volatile"
"unsafe"
)
var handlers = [14]func(Interrupt){}
const (
IRQ_VBLANK = 0
IRQ_HBLANK = 1
IRQ_VCOUNT = 2
IRQ_TIMER0 = 3
IRQ_TIMER1 = 4
IRQ_TIMER2 = 5
IRQ_TIMER3 = 6
IRQ_COM = 7
IRQ_DMA0 = 8
IRQ_DMA1 = 9
IRQ_DMA2 = 10
IRQ_DMA3 = 11
IRQ_KEYPAD = 12
IRQ_GAMEPAK = 13
)
var (
regInterruptEnable = (*volatile.Register16)(unsafe.Pointer(uintptr(0x4000200)))
regInterruptRequestFlags = (*volatile.Register16)(unsafe.Pointer(uintptr(0x4000202)))
regInterruptMasterEnable = (*volatile.Register16)(unsafe.Pointer(uintptr(0x4000208)))
)
// New creates a new Interrupt object. Do not call it multiple times. If you do,
// make sure the interrupt is disabled while you do so. The last call will set
// the active interrupt handler.
func New(id int, handler func(Interrupt)) Interrupt {
handlers[id] = handler
return Interrupt{id}
}
// Enable enables this interrupt. Right after calling this function, the
// interrupt may be invoked if it was already pending.
func (irq Interrupt) Enable() {
regInterruptEnable.SetBits(1 << irq.num)
}
//export handleInterrupt
func handleInterrupt() {
flags := regInterruptRequestFlags.Get()
for i := range handlers {
if flags & (1 << i) != 0 {
irq := Interrupt{i}
regInterruptRequestFlags.Set(1 << i) // acknowledge interrupt
handlers[i](irq)
}
}
}
@@ -0,0 +1,19 @@
// +build avr riscv,baremetal cortexm
package interrupt
// New is a compiler intrinsic that creates a new Interrupt object. You may call
// it only once, and must pass constant parameters to it. That means that the
// interrupt ID must be a Go constant and that the handler must be a simple
// function: closures are not supported.
func New(id int, handler func(Interrupt)) Interrupt
// Register is used to declare an interrupt. You should not normally call this
// function: it is only for telling the compiler about the mapping between an
// interrupt number and the interrupt handler name.
func Register(id int, handlerName string) int
type handle struct {
handler func(Interrupt)
Interrupt
}
+1
View File
@@ -4,6 +4,7 @@ package runtime
import (
"unsafe"
_ "runtime/interrupt" // make sure the interrupt handler is defined
)
type timeUnit int64
+9 -10
View File
@@ -6,6 +6,7 @@ import (
"device/arm"
"device/sam"
"machine"
"runtime/interrupt"
"runtime/volatile"
"unsafe"
)
@@ -214,8 +215,14 @@ func initRTC() {
sam.RTC_MODE0.CTRL.SetBits(sam.RTC_MODE0_CTRL_ENABLE)
waitForSync()
arm.SetPriority(sam.IRQ_RTC, 0xc0)
arm.EnableIRQ(sam.IRQ_RTC)
intr := interrupt.New(sam.IRQ_RTC, func(intr interrupt.Interrupt) {
// disable IRQ for CMP0 compare
sam.RTC_MODE0.INTFLAG.Set(sam.RTC_MODE0_INTENSET_CMP0)
timerWakeup.Set(1)
})
intr.SetPriority(0xc0)
intr.Enable()
}
func waitForSync() {
@@ -286,14 +293,6 @@ func timerSleep(ticks uint32) {
}
}
//go:export RTC_IRQHandler
func handleRTC() {
// disable IRQ for CMP0 compare
sam.RTC_MODE0.INTFLAG.Set(sam.RTC_MODE0_INTENSET_CMP0)
timerWakeup.Set(1)
}
func initUSBClock() {
// Turn on clock for USB
sam.PM.APBBMASK.SetBits(sam.PM_APBBMASK_USB_)
+8 -9
View File
@@ -6,6 +6,7 @@ import (
"device/arm"
"device/nrf"
"machine"
"runtime/interrupt"
"runtime/volatile"
)
@@ -43,8 +44,13 @@ func initLFCLK() {
func initRTC() {
nrf.RTC1.TASKS_START.Set(1)
arm.SetPriority(nrf.IRQ_RTC1, 0xc0) // low priority
arm.EnableIRQ(nrf.IRQ_RTC1)
intr := interrupt.New(nrf.IRQ_RTC1, func(intr interrupt.Interrupt) {
nrf.RTC1.INTENCLR.Set(nrf.RTC_INTENSET_COMPARE0)
nrf.RTC1.EVENTS_COMPARE[0].Set(0)
rtc_wakeup.Set(1)
})
intr.SetPriority(0xc0) // low priority
intr.Enable()
}
func putchar(c byte) {
@@ -96,10 +102,3 @@ func rtc_sleep(ticks uint32) {
arm.Asm("wfi")
}
}
//go:export RTC1_IRQHandler
func handleRTC1() {
nrf.RTC1.INTENCLR.Set(nrf.RTC_INTENSET_COMPARE0)
nrf.RTC1.EVENTS_COMPARE[0].Set(0)
rtc_wakeup.Set(1)
}
+5 -4
View File
@@ -6,6 +6,7 @@ import (
"device/arm"
"device/stm32"
"machine"
"runtime/interrupt"
"runtime/volatile"
)
@@ -101,8 +102,9 @@ func initRTC() {
func initTIM() {
stm32.RCC.APB1ENR.SetBits(stm32.RCC_APB1ENR_TIM3EN)
arm.SetPriority(stm32.IRQ_TIM3, 0xc3)
arm.EnableIRQ(stm32.IRQ_TIM3)
intr := interrupt.New(stm32.IRQ_TIM3, handleTIM3)
intr.SetPriority(0xc3)
intr.Enable()
}
const asyncScheduler = false
@@ -186,8 +188,7 @@ func timerSleep(ticks uint32) {
}
}
//go:export TIM3_IRQHandler
func handleTIM3() {
func handleTIM3(interrupt.Interrupt) {
if stm32.TIM3.SR.HasBits(stm32.TIM_SR_UIF) {
// Disable the timer.
stm32.TIM3.CR1.ClearBits(stm32.TIM_CR1_CEN)
+9 -8
View File
@@ -6,6 +6,7 @@ import (
"device/arm"
"device/stm32"
"machine"
"runtime/interrupt"
"runtime/volatile"
)
@@ -121,8 +122,9 @@ var timerWakeup volatile.Register8
func initTIM3() {
stm32.RCC.APB1ENR.SetBits(stm32.RCC_APB1ENR_TIM3EN)
arm.SetPriority(stm32.IRQ_TIM3, 0xc3)
arm.EnableIRQ(stm32.IRQ_TIM3)
intr := interrupt.New(stm32.IRQ_TIM3, handleTIM3)
intr.SetPriority(0xc3)
intr.Enable()
}
// Enable the TIM7 clock.(tick count)
@@ -139,8 +141,9 @@ func initTIM7() {
// Enable the timer.
stm32.TIM7.CR1.SetBits(stm32.TIM_CR1_CEN)
arm.SetPriority(stm32.IRQ_TIM7, 0xc1)
arm.EnableIRQ(stm32.IRQ_TIM7)
intr := interrupt.New(stm32.IRQ_TIM7, handleTIM7)
intr.SetPriority(0xc1)
intr.Enable()
}
const asyncScheduler = false
@@ -183,8 +186,7 @@ func timerSleep(ticks uint32) {
}
}
//go:export TIM3_IRQHandler
func handleTIM3() {
func handleTIM3(interrupt.Interrupt) {
if stm32.TIM3.SR.HasBits(stm32.TIM_SR_UIF) {
// Disable the timer.
stm32.TIM3.CR1.ClearBits(stm32.TIM_CR1_CEN)
@@ -197,8 +199,7 @@ func handleTIM3() {
}
}
//go:export TIM7_IRQHandler
func handleTIM7() {
func handleTIM7(interrupt.Interrupt) {
if stm32.TIM7.SR.HasBits(stm32.TIM_SR_UIF) {
// clear the update flag
stm32.TIM7.SR.ClearBits(stm32.TIM_SR_UIF)
+12 -9
View File
@@ -1,16 +1,17 @@
OUTPUT_ARCH(arm)
ENTRY(_start)
/* Note: iwram is reduced by 96 bytes because the last part of that RAM
* (starting at 0x03007FA0) is used for interrupt handling.
*/
MEMORY {
ewram : ORIGIN = 0x02000000, LENGTH = 256K /* on-board work RAM (2 wait states) */
iwram : ORIGIN = 0x03000000, LENGTH = 32K /* in-chip work RAM (faster) */
rom : ORIGIN = 0x08000000, LENGTH = 32M /* flash ROM */
ewram : ORIGIN = 0x02000000, LENGTH = 256K /* on-board work RAM (2 wait states) */
iwram : ORIGIN = 0x03000000, LENGTH = 32K-96 /* in-chip work RAM (faster) */
rom : ORIGIN = 0x08000000, LENGTH = 32M /* flash ROM */
}
__iwram_top = ORIGIN(iwram) + LENGTH(iwram);;
_stack_size = 3K;
__sp_irq = _stack_top;
__sp_usr = _stack_top - 1K;
__stack_size_irq = 1K;
__stack_size_usr = 2K;
SECTIONS
{
@@ -35,8 +36,10 @@ SECTIONS
.stack (NOLOAD) :
{
. = ALIGN(4);
. += _stack_size;
_stack_top = .;
__sp_irq = .;
. += __stack_size_irq;
__sp_usr = .;
. += __stack_size_usr;
} >iwram
/* Start address (in flash) of .data, used by startup code. */
+15 -3
View File
@@ -17,9 +17,7 @@ _start:
.byte 0x00,0x00 // Checksum (80000BEh)
start_vector:
mov r0, #0x4000000 // REG_BASE
str r0, [r0, #0x208]
// Configure stacks
mov r0, #0x12 // Switch to IRQ Mode
msr cpsr, r0
ldr sp, =__sp_irq // Set IRQ stack
@@ -27,7 +25,21 @@ start_vector:
msr cpsr, r0
ldr sp, =__sp_usr // Set user stack
// Configure interrupt handler
mov r0, #0x4000000 // REG_BASE
ldr r1, =handleInterruptARM
str r1, [r0, #-4] // actually storing to 0x03007FFC due to mirroring
// Enable interrupts
mov r1, #1
str r1, [r0, #0x208] // 0x04000208 Interrupt Master Enable
// Jump to user code (switching to Thumb mode)
ldr r3, =main
bx r3
// Small interrupt handler that immediately jumps to a function defined in the
// program (in Thumb) for further processing.
handleInterruptARM:
ldr r0, =handleInterrupt
bx r0
+7
View File
@@ -260,6 +260,7 @@ func writeGo(outdir string, device *Device) error {
package {{.pkgName}}
import (
"runtime/interrupt"
"runtime/volatile"
"unsafe"
)
@@ -277,6 +278,12 @@ const ({{range .interrupts}}
IRQ_max = {{.interruptMax}} // Highest interrupt number on this device.
)
// Map interrupt numbers to function names.
// These aren't real calls, they're removed by the compiler.
var ({{range .interrupts}}
_ = interrupt.Register(IRQ_{{.Name}}, "__vector_{{.Name}}"){{end}}
)
// Peripherals.
var ({{range .peripherals}}
// {{.Caption}}
+14 -5
View File
@@ -82,6 +82,7 @@ type Device struct {
type interrupt struct {
Name string
HandlerName string
peripheralIndex int
Value int // interrupt number
Description string
@@ -171,12 +172,12 @@ func readSVD(path, sourceURL string) (*Device, error) {
groupName := cleanName(periphEl.GroupName)
for _, interrupt := range periphEl.Interrupts {
addInterrupt(interrupts, interrupt.Name, interrupt.Index, description)
addInterrupt(interrupts, interrupt.Name, interrupt.Name, interrupt.Index, description)
// As a convenience, also use the peripheral name as the interrupt
// name. Only do that for the nrf for now, as the stm32 .svd files
// don't always put interrupts in the correct peripheral...
if len(periphEl.Interrupts) == 1 && strings.HasPrefix(device.Name, "nrf") {
addInterrupt(interrupts, periphEl.Name, interrupt.Index, description)
addInterrupt(interrupts, periphEl.Name, interrupt.Name, interrupt.Index, description)
}
}
@@ -388,7 +389,7 @@ func readSVD(path, sourceURL string) (*Device, error) {
}, nil
}
func addInterrupt(interrupts map[string]*interrupt, name string, index int, description string) {
func addInterrupt(interrupts map[string]*interrupt, name, interruptName string, index int, description string) {
if _, ok := interrupts[name]; ok {
if interrupts[name].Value != index {
// Note: some SVD files like the one for STM32H7x7 contain mistakes.
@@ -409,6 +410,7 @@ func addInterrupt(interrupts map[string]*interrupt, name string, index int, desc
} else {
interrupts[name] = &interrupt{
Name: name,
HandlerName: interruptName + "_IRQHandler",
peripheralIndex: len(interrupts),
Value: index,
Description: description,
@@ -619,6 +621,7 @@ func writeGo(outdir string, device *Device) error {
package {{.pkgName}}
import (
"runtime/interrupt"
"runtime/volatile"
"unsafe"
)
@@ -628,12 +631,18 @@ const (
DEVICE = "{{.metadata.name}}"
)
// Interrupt numbers
// Interrupt numbers.
const ({{range .interrupts}}
IRQ_{{.Name}} = {{.Value}} // {{.Description}}{{end}}
IRQ_max = {{.interruptMax}} // Highest interrupt number on this device.
)
// Map interrupt numbers to function names.
// These aren't real calls, they're removed by the compiler.
var ({{range .interrupts}}
_ = interrupt.Register(IRQ_{{.Name}}, "{{.HandlerName}}"){{end}}
)
// Peripherals.
var (
{{range .peripherals}} {{.Name}} = (*{{.GroupName}}_Type)(unsafe.Pointer(uintptr(0x{{printf "%x" .BaseAddress}}))) // {{.Description}}
@@ -879,7 +888,7 @@ Default_Handler:
num++
}
num++
fmt.Fprintf(w, " .long %s_IRQHandler\n", intr.Name)
fmt.Fprintf(w, " .long %s\n", intr.HandlerName)
}
w.WriteString(`
+48
View File
@@ -0,0 +1,48 @@
package transform
import (
"go/scanner"
"go/token"
"path/filepath"
"tinygo.org/x/go-llvm"
)
// errorAt returns an error value at the location of the value.
// The location information may not be complete as it depends on debug
// information in the IR.
func errorAt(val llvm.Value, msg string) scanner.Error {
return scanner.Error{
Pos: getPosition(val),
Msg: msg,
}
}
// getPosition returns the position information for the given value, as far as
// it is available.
func getPosition(val llvm.Value) token.Position {
if !val.IsAInstruction().IsNil() {
loc := val.InstructionDebugLoc()
if loc.IsNil() {
return token.Position{}
}
file := loc.LocationScope().ScopeFile()
return token.Position{
Filename: filepath.Join(file.FileDirectory(), file.FileFilename()),
Line: int(loc.LocationLine()),
Column: int(loc.LocationColumn()),
}
} else if !val.IsAFunction().IsNil() {
loc := val.Subprogram()
if loc.IsNil() {
return token.Position{}
}
file := loc.ScopeFile()
return token.Position{
Filename: filepath.Join(file.FileDirectory(), file.FileFilename()),
Line: int(loc.SubprogramLine()),
}
} else {
return token.Position{}
}
}
+184
View File
@@ -0,0 +1,184 @@
package transform
import (
"fmt"
"strings"
"tinygo.org/x/go-llvm"
)
func LowerInterruptRegistrations(mod llvm.Module) []error {
var errs []error
// Discover interrupts. The runtime/interrupt.Register call is a compiler
// intrinsic that maps interrupt numbers to handler names.
handlerNames := map[int64]string{}
for _, call := range getUses(mod.NamedFunction("runtime/interrupt.Register")) {
if call.IsACallInst().IsNil() {
errs = append(errs, errorAt(call, "expected a call to runtime/interrupt.Register?"))
continue
}
num := call.Operand(0)
if num.IsAConstant().IsNil() {
errs = append(errs, errorAt(call, "non-constant interrupt number?"))
continue
}
// extract the interrupt name
nameStrGEP := call.Operand(1)
if nameStrGEP.IsAConstantExpr().IsNil() || nameStrGEP.Opcode() != llvm.GetElementPtr {
errs = append(errs, errorAt(call, "expected a string operand?"))
continue
}
nameStrPtr := nameStrGEP.Operand(0) // note: assuming it's a GEP to the first byte
nameStrLen := call.Operand(2)
if nameStrPtr.IsAGlobalValue().IsNil() || !nameStrPtr.IsGlobalConstant() || nameStrLen.IsAConstant().IsNil() {
errs = append(errs, errorAt(call, "non-constant interrupt name?"))
continue
}
// keep track of this name
name := string(getGlobalBytes(nameStrPtr)[:nameStrLen.SExtValue()])
handlerNames[num.SExtValue()] = name
// remove this pseudo-call
call.ReplaceAllUsesWith(llvm.ConstNull(call.Type()))
call.EraseFromParentAsInstruction()
}
ctx := mod.Context()
nullptr := llvm.ConstNull(llvm.PointerType(ctx.Int8Type(), 0))
builder := ctx.NewBuilder()
defer builder.Dispose()
// Create a function type with the signature of an interrupt handler.
fnType := llvm.FunctionType(ctx.VoidType(), nil, false)
handleType := mod.GetTypeByName("runtime/interrupt.handle")
if handleType.IsNil() {
// Nothing to do here.
return errs
}
handlePtrType := llvm.PointerType(handleType, 0)
var handlers []llvm.Value
for global := mod.FirstGlobal(); !global.IsNil(); global = llvm.NextGlobal(global) {
if global.Type() != handlePtrType {
continue
}
handlers = append(handlers, global)
}
for _, global := range handlers {
initializer := global.Initializer()
num := llvm.ConstExtractValue(initializer, []uint32{1, 0})
name := handlerNames[num.SExtValue()]
if name == "" {
errs = append(errs, errorAt(global, fmt.Sprintf("cannot find interrupt name for number %d", num.SExtValue())))
continue
}
// Create the func value.
handlerContext := llvm.ConstExtractValue(initializer, []uint32{0, 0})
handlerFuncPtr := llvm.ConstExtractValue(initializer, []uint32{0, 1})
if isFunctionLocal(handlerContext) || isFunctionLocal(handlerFuncPtr) {
errs = append(errs, errorAt(global, "func value must be constant"))
continue
}
if !handlerFuncPtr.IsAConstantExpr().IsNil() && handlerFuncPtr.Opcode() == llvm.PtrToInt {
// This is a ptrtoint: the IR was created for func lowering using a
// switch statement.
global := handlerFuncPtr.Operand(0)
if global.IsAGlobalValue().IsNil() {
errs = append(errs, errorAt(global, "internal error: expected a global for func lowering"))
continue
}
initializer := global.Initializer()
if initializer.Type() != mod.GetTypeByName("runtime.funcValueWithSignature") {
errs = append(errs, errorAt(global, "internal error: func lowering global has unexpected type"))
continue
}
ptrtoint := llvm.ConstExtractValue(initializer, []uint32{0})
if ptrtoint.IsAConstantExpr().IsNil() || ptrtoint.Opcode() != llvm.PtrToInt {
errs = append(errs, errorAt(global, "internal error: func lowering global has unexpected func ptr type"))
continue
}
handlerFuncPtr = ptrtoint.Operand(0)
}
if handlerFuncPtr.Type().TypeKind() != llvm.PointerTypeKind || handlerFuncPtr.Type().ElementType().TypeKind() != llvm.FunctionTypeKind {
errs = append(errs, errorAt(global, "internal error: unexpected LLVM types in func value"))
continue
}
// Check for an existing handler, and report it as an error if there is
// one.
fn := mod.NamedFunction(name)
if fn.IsNil() {
fn = llvm.AddFunction(mod, name, fnType)
} else if fn.Type().ElementType() != fnType {
// Don't bother with a precise error message (listing the
// previsous location) because this should not normally happen
// anyway.
errs = append(errs, errorAt(global, name+" redeclared with a different signature"))
continue
} else if !fn.IsDeclaration() {
// Interrupt handler was already defined. Check the first
// instruction (which should be a call) whether this handler would
// be identical anyway.
firstInst := fn.FirstBasicBlock().FirstInstruction()
if !firstInst.IsACallInst().IsNil() && firstInst.OperandsCount() == 4 && firstInst.CalledValue() == handlerFuncPtr && firstInst.Operand(0) == num && firstInst.Operand(1) == handlerContext {
// Already defined and apparently identical, so assume this is
// fine.
continue
}
errValue := name + " redeclared in this program"
fnPos := getPosition(fn)
if fnPos.IsValid() {
errValue += "\n\tprevious declaration at " + fnPos.String()
}
errs = append(errs, errorAt(global, errValue))
continue
}
// Create the wrapper function.
fn.SetUnnamedAddr(true)
entryBlock := ctx.AddBasicBlock(fn, "entry")
builder.SetInsertPointAtEnd(entryBlock)
// Set the 'interrupt' flag if needed on this platform.
if strings.HasPrefix(mod.Target(), "avr") {
fn.SetFunctionCallConv(85) // CallingConv::AVR_SIGNAL
}
// Fill the function declaration with the forwarding call.
builder.CreateCall(handlerFuncPtr, []llvm.Value{num, handlerContext, nullptr}, "")
builder.CreateRetVoid()
for _, user := range getUses(global) {
if user.IsAConstantExpr().IsNil() || user.Opcode() != llvm.PtrToInt {
errs = append(errs, errorAt(global, "internal error: expected a ptrtoint"))
continue
}
user.ReplaceAllUsesWith(num)
}
global.EraseFromParentAsGlobal()
}
// Remove now-useless runtime/interrupt.use calls. These are used for some
// platforms like AVR that do not need to enable interrupts to use them, so
// need another way to keep them alive.
// After interrupts have been lowered, this call is useless and would cause
// a linker error so must be removed.
for _, call := range getUses(mod.NamedFunction("runtime/interrupt.use")) {
if call.IsACallInst().IsNil() {
errs = append(errs, errorAt(call, "internal error: expected call to runtime/interrupt.use"))
continue
}
call.EraseFromParentAsInstruction()
}
return errs
}
+16
View File
@@ -89,3 +89,19 @@ func typeHasPointers(t llvm.Type) bool {
return false
}
}
// isFunctionLocal returns true if (and only if) this value is local to a
// function. That is, it returns true for instructions and parameters, and false
// for constants and globals.
func isFunctionLocal(val llvm.Value) bool {
if !val.IsAConstant().IsNil() {
return false
}
if !val.IsAInstruction().IsNil() {
return true
}
if !val.IsAGlobalValue().IsNil() {
return false
}
panic("unknown value kind")
}